# Nanodigest > Nanotechnology Magazine ## Posts - [Students develop novel multi-metal 3D printing process](https://nanodigest.in/students-develop-novel-multi-metal-3d-printing-process/): Students develop novel multi-metal 3D printing process Students at ETH Zurich have developed a laser power bed fusion machine that follows a circular tool path to print round components, thereby being able to process multiple metals at once. The system significantly reduces manufacturing time and opens up new possibilities for aerospace and industry. ETH has filed a patent application for the machine. Today, virtually all modern rocket engines rely on 3D printing to maximise their performance with tight coupling between structure and function. Students at ETH Zurich have now built a high-speed multi-material metal printer: a laser power bed fusion […] - [Geometry revealed at the heart of quantum matter](https://nanodigest.in/geometry-revealed-at-the-heart-of-quantum-matter/): Geometry revealed at the heart of quantum matter A UNIGE team reveals a once purely theoretical geometry at the heart of quantum materials, with major implications for future electronics. How can data be processed at lightning speed, or electricity conducted without loss? To achieve this, scientists and industry alike are turning to quantum materials, governed by the laws of the infinitesimal. Designing such materials requires a detailed understanding of atomic phenomena, much of which remains unexplored. A team from the University of Geneva (UNIGE), in collaboration with the University of Salerno and the CNR-SPIN Institute (Italy), has taken a major […] - [Wrinkles in Atomically Thin Materials Unlock Ultra efficient Electronics](https://nanodigest.in/wrinkles-in-atomically-thin-materials-unlock-ultra-efficient-electronics/): Wrinkles in atomically thin materials unlock ultra efficient electronics By Silvia Cernea Clark Wrinkles can be an asset — especially for next-generation electronics. Rice University scientists have discovered that tiny creases in two-dimensional materials can control electrons’ spin with record precision, opening the path to ultracompact, energy-efficient electronic devices. If most devices today use the charge of electrons flowing through silicon to process and encode information, future computing may instead harness spin — a quantum property of electrons that takes on either an “up” or “down” value. Computing with spin could overcome the limitations of current silicon-based technology, reducing the […] - [Researchers track the motion of a single electron during a chemical reaction](https://nanodigest.in/researchers-track-the-motion-of-a-single-electron-during-a-chemical-reaction/): Researchers track the motion of a single electron during a chemical reaction They used SLAC’s ultrafast X-ray laser to follow the impact of a single electron moving within a molecule during an entire chemical reaction. By Emily Ayshford Valence electrons, located in the outermost shell of an atom, play an important role in driving chemical reactions and forming bonds with other atoms. But imaging these particles as they perform this work is tricky. Not only are valence electrons incredibly small, they also form chemical bonds within femtoseconds – mere quadrillionths of a second. Now, an experiment at the Department of […] - [New method produces ultra-thin membranes](https://nanodigest.in/new-method-produces-ultra-thin-membranes/): New method produces ultra-thin membranes  Nanomanufacturing Breakthrough Could Revolutionize Night Vision Technology, Other Fields New method produces ultra-thin membranes with record-breaking sensitivity, promising to transform thermal imaging and night vision technology Rensselaer Polytechnic Institute (RPI) scientists played a pivotal role in the development of a new manufacturing technique that could revolutionize infrared detection technology, making thermal imaging devices smaller, more accurate and far more affordable. The research, published recently in Nature, introduces an innovative “atomic lift-off” method that creates ultra-thin crystalline membranes capable of detecting infrared radiation with high sensitivity, and without the need for expensive and bulky cooling systems. […] - [BREATHE NEW LIFE INTO UNUSED VACCINES](https://nanodigest.in/breathe-new-life-into-unused-vaccines/): BREATHE NEW LIFE INTO UNUSED VACCINES by Simonas Bendžius During the COVID-19 pandemic, pharmaceutical companies produced unprecedented quantities of vaccines. This helped save millions of lives, but on the other hand, many vaccines remained unused, expired, and had to be thrown away. To avoid such problems in the future, Lithuanian researchers at the Center for Physical Sciences and Technology (FTMC) are proposing an environmentally friendly solution as part of a project: perhaps expired vaccines could be repurposed for another purpose – the development of new biosensors? A group of scientists demonstrated this possibility for the first time in the world […] - [Illuminate previously unseen properties of materials](https://nanodigest.in/illuminate-previously-unseen-properties-of-materials/): Illuminate previously unseen properties of materials RPI Researchers Join Expertise at the Frontier of Light and Materials Research. Edwin Fohtung and Moussa N’Gom illuminate previously unseen properties of materials. Researchers with the schools of science and engineering at Rensselaer Polytechnic Institute (RPI) are exploring new ways to manipulate matter with light to unlock a new generation of computer chips, photovoltaic cells and other advanced materials. Physics professor Moussa N’Gom, Ph.D., and materials science professor Edwin Fohtung, Ph.D., have brought together their respective areas of expertise — optics and materials science — to illuminate previously unknown properties of the materials that will […] - [AI helps chemists develop tougher plastics](https://nanodigest.in/ai-helps-chemists-develop-tougher-plastics/): AI helps chemists develop tougher plastics  Researchers created polymers that are more resistant to tearing by incorporating stress-responsive molecules identified by a machine-learning model. A new strategy for strengthening polymer materials could lead to more durable plastics and cut down on plastic waste, according to researchers at MIT and Duke University. Using machine learning, the researchers identified crosslinker molecules that can be added to polymer materials, allowing them to withstand more force before tearing. These crosslinkers belong to a class of molecules known as mechanophores, which change their shape or other properties in response to mechanical force. “These molecules can […] - [Molecules in the Spotlight](https://nanodigest.in/molecules-in-the-spotlight/): Molecules in the Spotlight Molecules in the Spotlight: Snapshots Reveal the Eternal Dance of Particles Frankfurt physicists observe coupled quantum zero-point motion of a molecule’s atoms Researchers at Goethe University Frankfurt have, for the first time, directly visualized the so-called quantum zero-point motion in a larger molecule. This motion is exhibited by particles even at absolute zero temperature. In a collaborative experiment with the Max Planck Institute for Nuclear Physics, the University of Hamburg, the European XFEL, and other partners, they managed to make this “eternal dance” of the atoms visible. The discovery was made possible by the COLTRIMS reaction […] - [New Ultra-fast, in-line Atomic Force Microscope (AFM)](https://nanodigest.in/new-ultra-fast-in-line-atomic-force-microscope-afm/): New Ultra-fast, in-line Atomic Force Microscope (AFM) Infinitesima Metron®3D 300mm System Released for In-line Process Control by Leading DRAM Manufacturer Ultra-fast, in-line atomic force microscope (AFM), the Metron®3D, goes online for advanced DRAM manufacturing at SK hynix in Korea The Metron®3D is able to generate images at speeds 10× that of a typical AFM, suitable for the rapid pace of high-volume manufacturing (HVM) Infinitesima today announced that SK hynix, a full stack artificial intelligence (AI) memory provider, has adopted the Metron®3D 300mm in-line wafer metrology system and released it for use in volume production. The Metron3D provides three-dimensional (3D) process […] - [Friction which cools](https://nanodigest.in/friction-which-cools/): Friction which cools How can a horde of active robots be automatically brought to a standstill? By arresting their dynamics in a self-sustained way. This phenomenon was discovered by physicists at Heinrich Heine University Düsseldorf (HHU) and La Sapienza University in Rome. The threshold principle of static friction with the ground plays a decisive role here: it removes the kinetic energy of two robots after a mutual collision so efficiently that they can no longer set themselves in motion. The researchers describe in the journal Nature Communications that this fundamental effect can also be used to construct controllable moving robot […] - [Left-handed or right-handed? Nanostructures identified by light](https://nanodigest.in/left-handed-or-right-handed-nanostructures-identified-by-light/): Left-handed or right-handed? Nanostructures identified by light How do left-handed and right-handed molecules differ? Researchers at ETH Zurich are using a new imaging method to visualise what was previously only measurable as an average, opening up new possibilities for biology and materials science. Why do spearmint and caraway seeds smell so differently, although their main scent molecules are almost identical? Why can a medicine save lives, while its mirror image is ineffective or even harmful? The answer lies in chirality, the “handedness” of molecules. Just as the left and right hands are similar but cannot be placed on top of […] - [New Possibilities for Scanning Tunnelling Microscopy](https://nanodigest.in/new-possibilities-for-scanning-tunnelling-microscopy/): New Possibilities for Scanning Tunnelling Microscopy A look beneath the surface: Research team at the University of Münster makes hidden structural and magnetic properties visible Scientists use scanning tunnelling microscopy to understand how a material’s electronic or magnetic properties relate to its structure on the atomic scale. When using this technique, however, they can normally investigate only the uppermost atomic layer of a material. Prof Anika Schlenhoff and postdoctoral researcher Dr Maciej Bazarnik from the Institute of Physics at the University of Münster have now succeeded for the first time in using a modified measurement method to image structural and […] - [Novel Candidiasis Treatment Overcoming Side Effects and Resistance​](https://nanodigest.in/novel-candidiasis-treatment-overcoming-side-effects-and-resistance/): Novel Candidiasis Treatment Overcoming Side Effects and Resistance​ Candida, a type of fungus, which can spread throughout the body via the bloodstream, leading to organ damage and sepsis. Recently, the incidence of candidiasis has surged due to the increase in immunosuppressive therapies, medical implants, and transplantation. Korean researchers have successfully developed a next-generation treatment that, unlike existing antifungals, selectively acts only on Candida, achieving both high therapeutic efficacy and low side effects simultaneously. KAIST (President Kwang Hyung Lee) announced on the 8th that a research team led by Professor Hyun-Jung Chung of the Department of Biological Sciences, in collaboration with […] - [Using lightning to make ammonia out of thin air](https://nanodigest.in/using-lightning-to-make-ammonia-out-of-thin-air/): Using lightning to make ammonia out of thin air Using lightning to make ammonia out of thin air. a new, more efficient method that brings us closer to sustainable production of ammonia and transition to a hydrogen-based economy. Scientists have developed lightning-produced ammonia in gas form – a new, more efficient method that brings us closer to sustainable production of ammonia and transition to a hydrogen-based economy. University of Sydney researchers have harnessed human-made lightning to develop a more efficient method of generating ammonia – one of the world’s most important chemicals. Ammonia is also the main ingredient of fertilisers […] - [Sydney scholar Richard Payne honoured](https://nanodigest.in/sydney-scholar-richard-payne-honoured/): Sydney scholar Richard Payne honoured with Australian Laureate Fellowship His research will investigate how proteins can advance the biotech and pharmaceutical sectors. Professor Richard Payne has been awarded a prestigious Australian Laureate Fellowship from the Australian Research Council. The Australian Research Council (ARC) has announced $65.3 million in funding over five years for 17 Australian Laureate Fellowships, including Professor Payne. The senior researchers who receive Australian Laureate Fellowships will carry out pioneering research across diverse fields to benefit both national and international communities. Professor Payne’s area of expertise is organic chemistry and chemical biology within the School of Chemistry. Since […] - [Physicists confirm elusive quantum spin liquid in new study](https://nanodigest.in/physicists-confirm-elusive-quantum-spin-liquid-in-new-study/): Physicists confirm elusive quantum spin liquid in new study An international team of scientists led by Rice University’s Pengcheng Dai has confirmed the existence of emergent photons and fractionalized spin excitations in a rare quantum spin liquid. Published in Nature Physics on June 19, their findings identify the crystalline compound cerium zirconium oxide (Ce₂Zr₂O₇) as a clear, 3D realization of this exotic state of matter. Long a subject of theoretical intrigue, quantum spin liquids offer promise for revolutionary technologies, including quantum computing and dissipationless energy transmission. By refusing to conform to traditional magnetic behavior, these materials realize emergent quantum electrodynamics […] - [A building material that lives and stores carbon](https://nanodigest.in/a-building-material-that-lives-and-stores-carbon/): A building material that lives and stores carbon Researchers are developing a living material that actively extracts carbon dioxide from the atmosphere. Photosynthetic cyanobacteria grow inside it, forming biomass and solid minerals and thus binding CO2 in two different manners. The idea seems futuristic: At ETH Zurich, various disciplines are working together to combine conventional materials with bacteria, algae and fungi. The common goal: to create living materials that acquire useful properties thanks to the metabolism of microorganisms – “such as the ability to bind CO2 from the air by means of photosynthesis,” says Mark Tibbitt, Professor of Macromolecular Engineering […] - [Researchers crack the code of body’s ancient immune defense](https://nanodigest.in/researchers-crack-the-code-of-bodys-ancient-immune-defense/): Researchers crack the code of body’s ancient immune defense A collaborative team from Penn Medicine and Penn Engineering have  unraveled the mathematics of a 500-million-year-old protein network that ‘decides’ which foreign materials are friend or foe. A collaborative team from the School of Engineering and Applied Science and the Perelman School of Medicine have unraveled the mathematics of a 500-million-year-old protein network that acts like the body’s bouncer, “deciding” which foreign materials get degraded by immune cells and which are allowed entry. They identified a molecular tipping point known as the “critical percolation threshold,” which is based on how densely […] - [Nanofibers yield stronger, tougher carbon fiber composites](https://nanodigest.in/nanofibers-yield-stronger-tougher-carbon-fiber-composites/): Nanofibers yield stronger, tougher carbon fiber composites Researchers at the U.S. Department of Energy (DOE)’s Oak Ridge National Laboratory (ORNL) have developed an innovative new technique using carbon nanofibers to enhance binding in carbon fiber and other fiber-reinforced polymer composites – an advance likely to improve structural materials for automobiles, airplanes and other applications that require lightweight and strong materials. The results, published in the journal Advanced Functional Materials, show promise for making products that are stronger and more affordable, opening new options for U.S. manufacturers to use carbon fiber in applications such as energy and national security. “The challenge […] - [The New Method for Formation of Chemical Bonds](https://nanodigest.in/the-new-method-for-formation-of-chemical-bonds/): The New Method for Formation of Chemical Bonds How Chemical Bonds Are Formed: Physicists Observe Energy Flow in Real Time A new method combines helium droplets with ultrashort laser pulses to initiate chemical processes in a controlled manner. This provides insights into the transfer of energy and charge during the formation of chemical bonds. For the first time, a research team led by Markus Koch from the Institute of Experimental Physics at Graz University of Technology (TU Graz) has tracked in real time how individual atoms combine to form a cluster and which processes are involved. To achieve this, the […] - [Nanoneedles patch for painless Cancer Biopsies](https://nanodigest.in/nanoneedles-patch-for-painless-cancer-biopsies/): Nanoneedles patch for painless Cancer Biopsies A patch containing tens of millions of microscopic nanoneedles could soon replace traditional biopsies, scientists have found a Nanoneedles patch for painless Cancer Biopsies The patch offers a painless and less invasive alternative for millions of patients worldwide who undergo biopsies each year to detect and monitor diseases like cancer and Alzheimer’s. Biopsies are among the most common diagnostic procedures worldwide, performed millions of times every year to detect diseases. However, they are invasive, can cause pain and complications, and can deter patients from seeking early diagnosis or follow-up tests. Traditional biopsies also remove […] - [Practising medicine on a lifelike silicone model](https://nanodigest.in/practising-medicine-on-a-lifelike-silicone-model/): Practising medicine on a lifelike silicone model An ETH spin-off, Swiss Vascular, has developed anatomically exact silicone models of cerebral vessels. Through this development, researchers will not only reduce the amount of animal experimentation required but also improve the standard of medical training for complex medical procedures. It all began with microcapsules – tiny magnetic carriers designed to deliver medicine to precise locations in the body to help fight against cancer, for example. The key question was: how to safely direct these capsules through the body’s complex vascular system? Fabian Landers and Pascal Theiler, doctoral students at the Department of […] - [Stabilising fleeting quantum states with light](https://nanodigest.in/stabilising-fleeting-quantum-states-with-light/): Stabilising fleeting quantum states with light Quantum materials exhibit remarkable emergent properties when they are excited by external sources. However, these excited states decay rapidly once the excitation is removed, limiting their practical applications. A team of researchers from Harvard University and the Paul Scherrer Institute PSI have now demonstrated an approach to stabilise these fleeting states and probe their quantum behaviour using bright X-ray flashes from the X-ray free electron laser SwissFEL at PSI. The findings are published in the journal Nature Materials. Some materials exhibit fascinating quantum properties that can lead to transformative technologies, from lossless electronics to […] - [New Printable, Injectable Materials for Advanced Medical Applications](https://nanodigest.in/new-printable-injectable-materials-for-advanced-medical-applications/): New Printable, Injectable Materials for Advanced Medical Applications A team of researchers led by the University of Sydney have partnered with Korea’s Yonsei University to create a new class of gels for advanced medical applications An international team of researchers led by the University of Sydney has been joined by Korea’s Yonsei University to develop a new type of hydrogel materials that could revolutionise the way we deliver medicines and support patients recovering from surgery. “The possibilities for what we can do by combining highly branched macromolecules with hydrogels are really exciting,” said Associate Professor Markus Müllner, an ARC Future […] - [Metal fleece: material for the batteries of the future](https://nanodigest.in/metal-fleece-material-for-the-batteries-of-the-future/): Metal fleece: material for the batteries of the future Battery electrodes thicken as a result of the accelerated transport of lithium ions via metal fleeces, making them particularly efficient and cost-effective Batteries are becoming more and more powerful. A discovery by researchers at the Max Planck Institute for Medical Research in Heidelberg could now give them a significant energy boost. A team led by Max Planck Director Joachim Spatz has discovered that metal fleeces used as contact material in battery electrodes significantly accelerate the charge transport of metal ions, in particular. This makes it possible to build significantly thicker electrodes […] - [AI and X-ray Vision to Gain Insight into Battery Electrolyte](https://nanodigest.in/ai-and-x-ray-vision-to-gain-insight-into-battery-electrolyte/): AI and X-ray Vision to Gain Insight into Battery Electrolyte Scientists Use AI and X-ray Vision to Gain Insight into Battery Electrolyte: Artificial intelligence and experimental validation reveal atomic-scale basis for improved ‘water-in-salt’ battery performance A team of scientists from the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory and Stony Brook University (SBU) used artificial intelligence (AI) to help them understand how zinc-ion batteries work — and potentially how to make them more efficient for future energy storage needs. Their study, published in the journal PRX Energy, focused on the water-based electrolyte that shuttles electrically charged zinc ions through the […] - [Mask users can now breathe easy on two counts](https://nanodigest.in/mask-users-can-now-breathe-easy-on-two-counts/): Mask users can now breathe easy on two counts The COVID-19 pandemic increased public awareness of the importance of mask use for personal protection. However, when the mesh size of mask fabrics is small enough to capture viruses, which are usually around one hundred nanometers in size, the fabric typically also restricts air flow, resulting in user discomfort. But now, researchers from Japan have found a way to avoid this. In a study published this month in Materials Advances, researchers from the Institute of Industrial Science, The University of Tokyo have overcome this bottleneck and developed a filter capable of […] - [Boosting Cancer Treatment](https://nanodigest.in/boosting-cancer-treatment/): Boosting cancer treatment: NUS researchers develop efficient ‘food delivery service’ for transporting cancer-fighting genes The non-viral, high-throughput NExT platform delivers genetic material into immune cells with high efficiency, offering a safer, faster and more scalable way to manufacture cell therapies for cancer, including hard-to-treat solid tumours Researchers at the National University of Singapore (NUS) have developed a scalable, non-viral technology that efficiently delivers genetic material into human immune cells. The platform, called Nanostraw Electro-actuated Transfection (NExT), uses tiny hollow nanostructures and electrical pulses to insert a wide variety of biomolecules — proteins, mRNA and gene-editing tools — into immune cells […] - [Emergence Quantum: a commercial quantum research 'special ops' team](https://nanodigest.in/emergence-quantum-a-commercial-quantum-research-special-ops-team/): Emergence Quantum: a commercial quantum research ‘special ops’ team What David Reilly’s Microsoft Quantum team did next.by Beth Miller, Washington University in St. Louis. A first-of-its-kind research and development company has been launched by the University of Sydney quantum technology team that worked closely with Microsoft Quantum for the best part of a decade. Led by Professor David Reilly and Dr Thomas Ohki, the 20-strong research firm is delivering quantum technology’s “missing link” as companies the world over race to realise the promise of the futuristic technology, which could revolutionise drug discovery, cybersecurity, materials science and artificial intelligence. Emergence Quantum […] - [Sugar-coated nanotherapy improves neuron survival](https://nanodigest.in/sugar-coated-nanotherapy-improves-neuron-survival/): Sugar-coated nanotherapy dramatically improves neuron survival in Alzheimer’s model By Amanda Morris New treatment traps, neutralizes toxic proteins to stop disease progression Scientists at Northwestern University have developed a new approach that directly combats the progression of neurodegenerative diseases like Alzheimer’s disease and amyotrophic lateral sclerosis (ALS). In these devastating illnesses, proteins misfold and clump together around brain cells, which ultimately leads to cell death. The innovative new treatment effectively traps the proteins before they can aggregate into the toxic structures capable of penetrating neurons. The trapped proteins then harmlessly degrade in the body. The “clean-up” strategy significantly boosted the […] - [Quantum simulation of chemical dynamics achieved for first time](https://nanodigest.in/quantum-simulation-of-chemical-dynamics-achieved-for-first-time/): Quantum simulation of chemical dynamics achieved for first time Experiment using a Sydney quantum computer could lead to improved skin cancer research or sunscreen design. Researchers at the University of Sydney have successfully performed a quantum simulation of chemical dynamics with real molecules for the first time, marking a significant milestone in the application of quantum computing to chemistry and medicine. Understanding in real time how atoms interact to form new compounds or interact with light has long been expected as a potential application of quantum technology. Now, quantum chemist Professor Ivan Kassal and Physics Horizon Fellow Dr Tingrei Tan, […] - [The Mysterious Chemical World Inside Nanopores](https://nanodigest.in/the-mysterious-chemical-world-inside-nanopores/): The Mysterious Chemical World Inside Nanopores by Beth Miller, Washington University in St. Louis Natural and engineered systems have a whole world of chemistry inside their tiny pores — known as nanopores — that changes depending on the chemical functional groups inside. A team of chemical engineers and materials scientists in the McKelvey School of Engineering at Washington University in St. Louis have found a way to precisely control contaminants in nanopores that would ultimately benefit desalination techniques, carbon dioxide storage and porous catalysts. Young-Shin Jun, professor of energy, environmental & chemical engineering, and Srikanth Singamaneni, the Lilyan & E. […] - [Stability solution brings unique form of carbon closer to practical application](https://nanodigest.in/stability-solution-brings-unique-form-of-carbon-closer-to-practical-application/): Stability solution brings unique form of carbon closer to practical application by Jamie Oberdick Carbyne, a one-dimensional chain of carbon atoms, is incredibly strong for being so thin, making it an intriguing possibility for use in next-generation electronics, but its extreme instability causing it to bend and snap on itself made it nearly impossible to produce at all, let alone produce enough of it for advanced studies. Now, an international team of researchers, including from Penn State, may have a solution. The research team has enclosed carbyne in single-walled carbon nanotubes — tiny, tube-shaped structures made entirely of carbon that […] - [It’s Hard to Get Meds to the Lungs: Breathable Algae Offers a New Path](https://nanodigest.in/its-hard-to-get-meds-to-the-lungs-breathable-algae-offers-a-new-path/): It’s Hard to Get Meds to the Lungs: Breathable Algae Offers a New Path By Liezel Labios Algae are the new delivery drivers: they are tiny enough to float in inhalable liquid particles and travel deep inside the lungs of mice where they drop off drugs to fight pneumonia. Years of UC San Diego research are converging, and clinical trials are getting closer. Our lungs are fairly susceptible to diseases. Unlike most other organs, the lungs are in direct contact with the outside world. When we breathe in, our lungs can also take in things besides the oxygen we need, […] - [New Bayesian Method Enables Rapid Detection of Quantum Dot Charge States](https://nanodigest.in/new-bayesian-method-enables-rapid-detection-of-quantum-dot-charge-states/): New Bayesian Method Enables Rapid Detection of Quantum Dot Charge States A research team at Tohoku University‘s Advanced Institute for Materials Research (WPI-AIMR) has developed a new technique to rapidly and accurately determine the charge state of electrons confined in semiconductor quantum dots–fundamental components of quantum computing systems. The method is based on Bayesian inference, a statistical framework that estimates the most likely state of a system using observed data. Led by Dr. Motoya Shinozaki (Specially Appointed Assistant Professor, WPI-AIMR) and Associate Professor Tomohiro Otsuka (also affiliated with the Research Institute of Electrical Communication), the team demonstrated that their Bayesian […] - [Unique molecule may lead to smaller, more efficient computers](https://nanodigest.in/unique-molecule-may-lead-to-smaller-more-efficient-computers/): Unique molecule may lead to smaller, more efficient computers By Janette Neuwahl Tannen A team of physicists from the University of Miami, with two collaborators, developed a new type of molecule that could offer a groundbreaking material for computer chips. Today, most of us carry a fairly powerful computer in our hand—a smartphone. But computers weren’t always so portable. Since the 1980s, they have become smaller, lighter, and better equipped to store and process vast troves of data. Yet the silicon chips that power computers can only get so small. “Over the past 50 years, the number of transistors we […] - [Depositing dots on corrugated chips improves photodetector capabilities](https://nanodigest.in/depositing-dots-on-corrugated-chips-improves-photodetector-capabilities/): Depositing dots on corrugated chips improves photodetector capabilities Near-infrared photodetectors are used in biomedical sensing and defense and security technologies. For enhanced performance and integrated, compact imaging systems, the photodetectors must be able to detect multiple wavelengths of light at once on a single chip. Quantum dots — tiny crystals made of semiconducting material — could present a path forward because different-size dots can be engineered to absorb different wavelengths of light. However, depositing films of quantum dots is difficult on the textured, corrugated surfaces used in the infrared regime. In a study published in Nanoscale, researchers at Lawrence Livermore […] - [Explaining the link between ‘good’ gut bacteria and rheumatoid arthritis](https://nanodigest.in/explaining-the-link-between-good-gut-bacteria-and-rheumatoid-arthritis/): Explaining the link between ‘good’ gut bacteria and rheumatoid arthritis By Emily Caldwell Study with mice, human data shows microbes manipulate gut lining immunity to promote autoimmune arthritis After spending years tracing the origin and migration pattern of an unusual type of immune cell in mice, researchers have shown in a new study how activity of “good” microbes in the gut is linked to rheumatoid arthritis and, potentially, other autoimmune diseases. Scientists first reported in 2016 that specific gut microbes known as commensal bacteria, which cause no harm and often contribute to host health, set off production and release of […] - [The way for scalable organic solar cells with enhanced thickness tolerance](https://nanodigest.in/the-way-for-scalable-organic-solar-cells-with-enhanced-thickness-tolerance/): New ICMAB study paves the way for scalable organic solar cells with enhanced thickness tolerance Researchers from the Institute of Materials Science of Barcelona (ICMAB-CSIC), in collaboration with Heidelberg University, Universidade da Coruña, and the EURECAT Technology Center, have made significant progress toward scalable organic solar technologies. Their recent study, published in Advanced Energy Materials and titled “What Makes Thickness‐Tolerant Organic Solar Cells?”, explores the key mechanisms that allow certain organic photovoltaic cells (OPVs) to maintain high efficiency even when the active layer is thicker—an essential requirement for large-scale, roll-to-roll manufacturing. Organic solar cells are emerging as a sustainable alternative […] - [Researchers advance toward a fault-tolerant quantum computer](https://nanodigest.in/researchers-advance-toward-a-fault-tolerant-quantum-computer/): Researchers advance toward a fault-tolerant quantum computer Researchers achieved a type of coupling between artificial atoms and photons that could enable readout and processing of quantum information in a few nanoseconds. In the future, quantum computers could rapidly simulate new materials or help scientists develop faster machine-learning models, opening the door to many new possibilities. But these applications will only be possible if quantum computers can perform operations extremely quickly, so scientists can make measurements and perform corrections before compounding error rates reduce their accuracy and reliability. The efficiency of this measurement process, known as readout, relies on the strength […] - [Couple satisfaction linked to fewer cognitive issues with chemo](https://nanodigest.in/couple-satisfaction-linked-to-fewer-cognitive-issues-with-chemo/): Couple satisfaction linked to fewer cognitive issues with chemo by Emily Caldwell Study of breast cancer patients finds general social support is also beneficial. A satisfying intimate relationship may help diminish chemotherapy-related cognitive problems experienced by patients with breast cancer, a new study suggests. General social support was also protective, but the association was less robust and lasting than a satisfying intimate partnership, which was characterized by fewer declines in both objective measures of cognitive setbacks and patient self-reports of subtle changes such as forgetting grocery list items and being unable to multitask. The findings suggest that couples therapy aimed […] - [AI Learns to Uncover the Hidden Atomic Structure of Crystals](https://nanodigest.in/ai-learns-to-uncover-the-hidden-atomic-structure-of-crystals/): AI Learns to Uncover the Hidden Atomic Structure of Crystals AI solves the century-old puzzle of uncovering the shape of atomic clusters by examining the patterns produced by an X-ray beam refracted through fine powder. One longstanding problem has sidelined life-saving drugs, stalled next-generation batteries, and kept archaeologists from identifying the origins of ancient artifacts. For more than 100 years, scientists have used a method called crystallography to determine the atomic structure of materials. The method works by shining an X-ray beam through a material sample and observing the pattern it produces. From this pattern – called a diffraction pattern […] - [Ultrasound and Cilia to Clean Implanted Stents and Catheters](https://nanodigest.in/ultrasound-and-cilia-to-clean-implanted-stents-and-catheters/): Ultrasound and Cilia to Clean Implanted Stents and Catheters An interdisciplinary research team from Bern and Zurich has developed a method to clean urinary stents and catheters non-invasively – through the skin and without surgery – using ultrasound-activated microstructures. Urinary stents and catheters are implanted medical tubes that are widely used in human and veterinary medicine to drain urine to/from the bladder. Ureteral stents are used when the ureter, the duct between the kidney and bladder, is blocked by tumors, pregnancy, stones or anatomical narrowing. Biofilm, produced by bacteria, and crystalline deposits, called encrustation, grow on the inner and outer […] - [Ultrafast Electrical Charging of Liquids](https://nanodigest.in/ultrafast-electrical-charging-of-liquids/): Ultrafast electrical charging of liquids How quickly liquids become electrically charged through ionic movement – ​​prediction confirmed Charged surfaces that come into contact with liquids—such as biological cell walls or battery electrodes—attract oppositely charged ions from the liquid. This creates two distinctly different charged regions: the surface itself and an oppositely charged region within the liquid: the so-called electric double layer. Although crucial for energy storage, the rate of its formation was previously unknown. A team of researchers has now developed a light-based technique to observe this ultrafast process. The results confirm previous models and expand their applicability to various […] - [Structure dictates effectiveness, safety in nanomedicine](https://nanodigest.in/structure-dictates-effectiveness-safety-in-nanomedicine/): Structure dictates effectiveness, safety in nanomedicine Structural precision drives therapeutic innovation, ultimately benefiting patients By Amanda Morris Historically, the vast majority of pharmaceutical drugs have been meticulously designed down to the atomic level. The specific location of each atom within the drug molecule is a critical factor in determining how well it works and how safe it is. In ibuprofen, for example, one molecule is effective as a pain reliever, but the mirror image of that same molecule is completely inactive. Now, Northwestern University and Mass General Brigham scientists argue that this precise structural control, which is applied to traditional […] - [Light Fields with Extraordinary Structure](https://nanodigest.in/light-fields-with-extraordinary-structure/): Light fields with extraordinary structure: plasmonic skyrmion bags Team from University of Stuttgart publishes results in Nature Physics A research group at the University of Stuttgart has manipulated light through its interaction with a metal surface so that it exhibits entirely new properties. The researchers have published their findings in Nature Physics. DOI: 10.1038/s41567-025-02873-1 “Our results add another chapter to the emerging field of skyrmion research,” proclaims Prof. Harald Giessen, head of the Fourth Physics Institute at the University of Stuttgart, whose group achieved this breakthrough. The team demonstrated the existence of “skyrmion bags” of light on the surface of a […] - [Nanoscale domain response may boost ultrasound imaging technology](https://nanodigest.in/nanoscale-domain-response-may-boost-ultrasound-imaging-technology/): Nanoscale domain response may boost ultrasound imaging technology First-ever real-time visualization of Nanoscale domain response may boost ultrasound imaging technology Ultrasound imaging is one of the most widely used diagnostic tools in modern medicine. Behind its non-invasive magic lies a class of materials known as piezoelectric single crystals, which can convert electrical signals into mechanical vibrations and vice versa. Now, in a world-first, a research team from Kumamoto University has successfully visualized how tiny structures inside one of these crystals respond to electric fields in real time—shedding light on the dynamics of nanostructure in materials used in ultrasound probes. The […] - [3D-Printed Graphene Composites for Efficient Ice Control](https://nanodigest.in/3d-printed-graphene-composites-for-efficient-ice-control/): 3D-Printed Graphene Composites for Efficient Ice Control By XI Min; ZHAO Weiwei A research team led by Prof. WANG Zhenyang at the Institute of Solid State Physics, the Hefei Institutes of Physical Science of the Chinese Academy of Sciences, has developed a novel 3D-printed graphene/polymer double-layer composite with high anisotropic thermal conductivity, offering enhanced photothermal and electrothermal performance for advanced ice control applications. The findings were published in Carbon and Chemical Engineering Journal. Graphene is known for its outstanding thermal and electrical conductivity, particularly its strong anisotropy—high in-plane conductivity and much lower through-plane conductivity. To utilize this property, the team […] - [A High-Performance Battery Anode Developed](https://nanodigest.in/a-high-performance-battery-anode-developed/): A High-Performance Battery Anode Developed by Pohang University of Science and Technology As the demand continues to grow for batteries capable of ultra-fast charging and high energy density in various sectors—from electric vehicles to large-scale energy storage systems (ESS)—a joint research team from POSTECH (Pohang University of Science and Technology) and the Korea Institute of Energy Research (KIER) has developed a promising next-generation anode material that may address these critical needs. The research is published in the journal ACS Nano. While graphite, the most common anode material in lithium-ion batteries (LIBs), offers robust structural stability, it is limited by its […] - [New Class of Quantum Materials](https://nanodigest.in/new-class-of-quantum-materials/): New Class of Quantum Materials By Shahrzad Abbasi, University of British Columbia The compound becomes only the second known metallic system with confirmed one-dimensional magnetism. A study by researchers from the University of British Columbia’s Blusson Quantum Matter Institute (UBC Blusson QMI) has found a rare form of one-dimensional quantum magnetism in the metallic compound Ti₄MnBi₂, offering evidence into a phase space that has remained, until now, largely theoretical. The study, published in Nature Materials (“Frustrated spin-1/2 chains in a correlated metal”), comes at a time of growing global interest in quantum materials that redefine the boundaries between magnetism, conductivity, […] - [Golden Eyes](https://nanodigest.in/golden-eyes/): Golden eyes: How gold nanoparticles may one day help to restore people’s vision A team of Brown University researchers has identified a promising new approach that may one day help to restore vision in people affected by macular degeneration and other retinal disorders. A new study by Brown University researchers suggests that gold nanoparticles — microscopic bits of gold thousands of times thinner than a human hair — might one day be used to help restore vision in people with macular degeneration and other retinal disorders. In a study published in the journal ACS Nano and supported by the National […] - [WHU team achieves breakthrough in directional liquid transport](https://nanodigest.in/whu-team-achieves-breakthrough-in-directional-liquid-transport/): WHU team achieves breakthrough in directional liquid transport A research team led by Professor Xue Longjian from the School of Power and Mechanical Engineering at Wuhan University (WHU) has made a breakthrough in directional liquid transport. Their study, titled Topological Elastic Liquid Diode, was recently published in Science Advances. Precise control of liquid movement is essential in fields such as microfluidics, inkjet printing, and biomedicine. However, most existing technologies rely on external stimuli or complex surface treatments, limiting their adaptability and practicality. To address this, the team drew inspiration from the 3D ratchet-like structure of Araucaria leaves to develop a […] - [A New Era in Materials Science](https://nanodigest.in/a-new-era-in-materials-science/): A New Era in Materials Science: Antiferromagnetic Quasicrystals Unveiled Quasicrystals (QCs) are fascinating solid materials that exhibit an intriguing atomic arrangement. Unlike regular crystals, in which atomic arrangements have an ordered repeating pattern, QCs display long-range atomic order that is not periodic. Due to this ‘quasiperiodic’ nature, QCs have unconventional symmetries that are absent in conventional crystals. Since their Nobel Prize-winning discovery, condensed matter physics researchers have dedicated immense attention towards QCs, attempting to both realize their unique quasiperiodic magnetic order and their possible applications in spintronics and magnetic refrigeration. Although theoreticians have long expected the establishment of antiferromagnetism in […] - [Reinventing quantum dot production through flow chemistry and sustainable technologies](https://nanodigest.in/reinventing-quantum-dot-production-through-flow-chemistry-and-sustainable-technologies/): Reinventing quantum dot production through flow chemistry and sustainable technologies In a context where the demand for innovative materials continues to grow, particularly to meet current technological and environmental challenges, research on nanomaterials is emerging as a strategic field. Among these, quantum dots are attracting particular attention due to their unique properties and vast range of applications. A team of researchers from the University of Liège recently distinguished itself by proposing a step towards a more sustainable production of these nanostructures. Quantum dots (QDs) are nanometer-sized semiconductor nanoparticles with unique optical and electronic properties. Their ability to absorb and emit […] - [Improving Rapid Tests](https://nanodigest.in/improving-rapid-tests/): Improving Rapid Tests: DNA Nanotechnology Boosts Sensitivity of Test Strips An LMU research team has significantly improved conventional test strips by building a nanoscale amplifier from DNA origami. This allows signals from biomarkers which indicate the presence of pathogens or disease to be amplified up to 125-fold. The new method could soon be market-ready and make diagnostic testing more efficient for many diseases. Improving Rapid Tests: The new method could soon be market-ready and make diagnostic testing more efficient for many diseases. Since the Covid-19 pandemic, pretty much everybody is familiar with this technology: paper-based rapid test strips, also called […] - [Using Light to Tune Silver Nanoparticles](https://nanodigest.in/using-light-to-tune-silver-nanoparticles/): Using light to tune silver nanoparticles opens door to better imaging and much more By Steve Lundeberg Researchers have discovered a way to use ultraviolet rays to precisely adjust the size and shape of silver nanoparticles, tiny but hugely important bits of matter for applications including electronics, environmental monitoring and medical imaging. In addition, the scientists found a technique for making the silver nanoparticles, whose specific properties depend on how big they are and what form they take, stable in the presence of light and oxygen, helping to ensure consistent performance over time. “This breakthrough could truly revolutionize the field,” […] - [How Human Cells Repair Damaged DNA](https://nanodigest.in/how-human-cells-repair-damaged-dna/): How human cells repair damaged DNA by Ori Schipper, freelance author Researchers at ETH Zurich have unravelled the complex network that cells use to repair their genetic material. By examining thousands upon thousands of genetic interactions, the team has discovered new vulnerabilities in cancer cells that could be exploited therapeutically in the future. DNA of human cells consists of a sequence of about 3.1 billion building blocks. Cells go to great lengths to maintain the integrity of this vast store of information. They constantly untangle knots in the DNA strand and create new chemical bonds when a strand of DNA breaks […] - [A Surprise Contender for Cooling Computers: Lasers](https://nanodigest.in/a-surprise-contender-for-cooling-computers-lasers/): A Surprise Contender for Cooling Computers: Lasers One company says lasers may save energy and water. Sandia Labs is helping test the idea Sandia National Laboratories is helping a tech company test a bright new idea for cooling computers. Minnesota-based startup Maxwell Labs has entered into a cooperative research and development agreement with Sandia and the University of New Mexico to demonstrate laser-based photonic cooling for computer chips. The company is pioneering the new technology to regulate the temperature of chips, significantly lower the power consumption and increase the efficiency of conventional air and water-based systems. “About 30 to 40 […] - [New Nanoscale Water Filter Removes Stubborn ‘Forever Chemicals’](https://nanodigest.in/new-nanoscale-water-filter-removes-stubborn-forever-chemicals/): New Nanoscale Water Filter Removes Stubborn ‘Forever Chemicals’ Traditional water filters struggle to remove smaller PFAS molecules, but a new Monash-designed filter changes that. Researchers at Monash University have developed a groundbreaking water filtration membrane that effectively removes small PFAS molecules, overcoming a significant challenge faced by conventional water filters. The research team designed a beta-cyclodextrin (βCD) modified graphene oxide (GO-βCD) membrane with nanoscale channels that selectively retain PFAS while allowing water to pass through. PFAS, commonly referred to as ‘forever chemicals,’ are widely used in industrial and consumer products, persisting in the environment and posing potential health risks. PFAS […] - ['Hydrogel-Impregnated Robust Interlocking Nano Connector'](https://nanodigest.in/hydrogel-impregnated-robust-interlocking-nano-connector/): ‘Hydrogel-Impregnated Robust Interlocking Nano Connector’ By Lee, Hyoung-min translator 100-fold increase in bioadhesive bonding strength… Reducing treatment burden and improving patients’ quality of life An innovative nano-coating technology that effectively prevents the migration of esophageal stents, a common complication in esophageal stricture treatment, has been developed by a Korean research team. A joint research team comprising Professor Lee Joon-seok from Hanyang University’s Department of Chemistry and Professors Park Jung-hoon and Kim Do-hoon from Seoul Asan Medical Center has developed a 3D porous nano-network coating technology that impregnates bioadhesives, significantly enhancing the adhesive strength between the esophageal stent and the esophageal […] - [Two “Impossible” Materials Merged Into New Artificial Structure](https://nanodigest.in/two-impossible-materials-merged-into-new-artificial-structure/): Two “Impossible” Materials Merged Into New Artificial Structure By Kitta MacPherson Two “Impossible” Materials Merged Into New Artificial StructureThe work, led by Rutgers researchers, could pave the way toward new quantum materials needed for advanced computing An international team led by Rutgers University-New Brunswick researchers has merged two lab-synthesized materials into a synthetic quantum structure once thought impossible to exist and produced an exotic structure expected to provide insights that could lead to new materials at the core of quantum computing. The work, described in a cover story in the journal Nano Letters, explains how four years of continuous experimentation […] - [New Fabrication Process Makes Artificial Muscles Spring into Action](https://nanodigest.in/new-fabrication-process-makes-artificial-muscles-spring-into-action/): New Fabrication Process Makes Artificial Muscles Spring into Action By Amanda Siegfried Researchers at The University of Texas at Dallas have invented a new, inexpensive method for fabricating artificial muscles for potential use in robots, in comfort-adjusting jackets that become more thermally insulating as the surrounding air becomes colder, and as mechanical energy harvesters. In a study published in the March 7 issue of the journal Science, UT Dallas researchers and their collaborators describe their mandrel-free method for making springlike, thermally driven polymer muscles that can stretch 97 percent of their original length and have a spring index over 50. The […] - [New Fabrication Method to Make Lightsails for Interstellar Travel](https://nanodigest.in/new-fabrication-method-to-make-lightsails-for-interstellar-travel/): Researchers develop new design and fabrication method to make lightsails for interstellar travel In a potential step toward sending small spacecraft to the stars, researchers have developed an ultra-thin, ultra-reflective membrane designed to ride a column of laser light to incredible speeds. Since its launch in 1977, NASA’s Voyager 1 spacecraft has traveled over 15 billion miles into deep space. That’s a long way — but it’s not even 1% of the distance to Alpha Centauri, the nearest star to the sun. If humans are going to send ships to the stars, space travel will have to get a lot […] - [A Modern Turn on Obstructions Patterns](https://nanodigest.in/a-modern-turn-on-obstructions-patterns/): A Modern Turn on Obstructions Patterns One of the easiest and most lovely actually happening designs can be watched when light is sparkled through a combine of somewhat misaligned occasional structures. This wonder, known as the moiré impact, is not as it were beautiful to see at, but moreover has critical results for the properties of materials. In an article distributed in ACS Nano, a group driven by analysts from the Organized of Mechanical Science, The College of Tokyo, reported the disclosure of a already concealed moiré design: a arrangement of occasional one-dimensional groups in tungsten ditelluride bilayers. In nanomaterials, […] - [A Molecular System for Controlled Release of Iron Developed](https://nanodigest.in/a-molecular-system-for-controlled-release-of-iron-developed/): A Molecular System for Controlled Release of Iron Developed Researchers integrated ferrocene (Fe-containing molecular sandwich) with carbon nanohoops to create a system releasing Fe2+ ions when activated by green light. In an international cooperation, researchers at the Universities of Amsterdam and Zurich have developed a molecular system for controlled release of iron. They integrated ferrocene, a molecular sandwich that encloses an iron atom, with a carbon ‘nanohoop’. As a result, the system allows for the release of Fe2+ ions upon activation with benign green light. It has recently been presented in a paper in the Journal of the American Chemical […] - [3D Nanotech Blankets Offer New Path to Clean Drinking Water](https://nanodigest.in/3d-nanotech-blankets-offer-new-path-to-clean-drinking-water/): 3D Nanotech Blankets Offer New Path to Clean Drinking Water By Tatyana Woodall, Ohio State University 3D Nanotech Blankets Offer New Path to Clean Drinking Water: Researchers have developed a new material that, by harnessing the power of sunlight, can clear water of dangerous pollutants. Created through a combination of soft chemistry gels and electrospinning — a technique where electrical force is applied to liquid to craft small fibers — the team constructed thin fiber-like strips of titanium dioxide (TiO₂), a compound often utilized in solar cells, gas sensors and various self-cleaning technologies. Despite being a great alternative energy source, […] - [A clear game-changer](https://nanodigest.in/a-clear-game-changer/): A Clear Game-Changer: Curtin’s Water-Repellent Glass Breaks New GroundCourtesy: Curtin University. Curtin Universityresearchers have developed a new technique to make glass water-repellent, a feature that could improve safety in vehicles, reduce cleaning costs for buildings and enhance filtration systems The research, published in the prestigious journal Advanced Functional Materials, shows how an innovative and non-toxic process using ultrasonic sound waves can alter the surface of glass, making it either hydrophobic (water resistant) or electrically charged. Lead researcher Associate Professor Nadim Darwish, an ARC Future Fellow at Curtin’s School of Molecular and Life Sciences (MLS), explained that the process uses ultrasound […] - [World’s First Technology to Observe Atomic Structural Changes of Nanoparticles in 3D](https://nanodigest.in/worlds-first-technology-to-observe-atomic-structural-changes-of-nanoparticles-in-3d/):   World’s First Technology to Observe Atomic Structural Changes of Nanoparticles in 3D Seoul National University College of Engineering announced that Professor Jungwon Park’s research team from the Department of Chemical and Biological Engineering has developed a groundbreaking technology to observe atomic structural changes of nanoparticles in three dimensions. This study, recognized as a revolutionary achievement that resolves a long-standing challenge even past Nobel laureates could not solve, was published online in Nature Communications, one of the most prestigious international journals, on January 29. Recently, nanoparticles have garnered significant attention as they are widely used in developing functional materials for […] - [Celebrating Science](https://nanodigest.in/celebrating-science/): Celebrating Science By Prof M A Shah Reaffirming our commitment to scientific thinking, innovation, and collaboration. National Science Day is celebrated on February 28 each year. This year, the University of Kashmir was leading the celebrations, where visionary leadership is likely to have arranged multiple programs for students and teachers. These programs can serve as training initiatives for the upcoming academic session and beyond. Observing such scientific festivals is essential for empowering youth to achieve global leadership in science and innovation, aligning with the theme of NSD 2025. By celebrating National Science Day, we reaffirm our commitment to scientific thinking, innovation, […] - [Nanomaterials to Combat Marine Oil Spills](https://nanodigest.in/nanomaterials-to-combat-marine-oil-spills/): Nanomaterials to Combat Marine Oil Spills: Cleaning up after a major oil spill is a long, costly prepare, and the harm to a coastal region’s biological system can be noteworthy. This is particularly genuine for the world’s Cold locale, where recently opened ocean paths will uncover inaccessible shorelines to expanded dangers due to an expected rise in ocean traffic. Current relief procedures indeed in intensely populated districts confront genuine confinements, counting moo oil retention capacity, potential harmfulness to marine life and a moderate remediation process. However, propels in nanotechnology may give arrangements that are more successful, more secure and work […] - [Diamonds are Forever But Not in Nanodevices](https://nanodigest.in/diamonds-are-forever-but-not-in-nanodevices/): Diamonds are Forever But Not in Nanodevices Ultrawide-bandgap semiconductors—such as diamond—are promising for next-generation electronics due to a larger energy gap between the valence and conduction bands, allowing them to handle higher voltages, operate at higher frequencies, and provide greater efficiency compared to traditional materials like silicon. However, their unique properties make it challenging to probe and understand how charge and heat move on nanometer-to-micron scales. Visible light has a very limited ability to probe nanoscale properties, and moreover, it is not absorbed by diamond, so it cannot be used to launch currents or rapid heating. Now, researchers at JILA, […] - [Half-Metals are Special Attractive Compounds](https://nanodigest.in/half-metals-are-special-attractive-compounds/): Half-metals are special attractive compounds that have been drawing in intrigued in the advancements of mass-storage innovations. A few of the materials in the family of Heusler amalgams were anticipated to have a half-metallic nature, but their half-metallic electronic structure shifts with their composition proportion and nuclear requested structure. One property, turn polarization, is principal to the material’s half-metallic properties. Turn polarization proportion is a physical property that demonstrates how polarized the number of electrons with turn in the up and down bearings is. Since turn polarization is impacted by the essential composition of the Heusler combination, it’s vital to […] - [Harnessing the Power of Sunflowers](https://nanodigest.in/harnessing-the-power-of-sunflowers/): Harnessing the Power of Sunflowers: Shape Memory Alloys Revolutionize Solar Tracking Inspired by nature, a new approach to solar tracking aims to maximize energy efficiency using shape memory alloys (SMAs). Drawing from the natural heliotropic behavior of sunflowers, researchers from  Qatar University, Doha, Qatar (https://doi.org/10.1007/s42452-024-05992-1) have explored innovative techniques for optimizing solar panel orientation. Sunflowers instinctively track the sun’s path from east to west (Sun path), significantly enhancing their access to sunlight. This concept has now been adapted for solar energy applications, where precise tracking can substantially increase energy capture. The recently published study, Characterization of Water-Controlled Shape Memory Alloys […] - [Energy-Efficient Microelectronics Discovered](https://nanodigest.in/energy-efficient-microelectronics-discovered/): Energy-Efficient Microelectronics Discovered: Fabric fortified by light beats might be jump toward more energy-efficient supercomputing. Ferroelectric fabric adjusts to light jolts by reorganizing nuclear network on the nanoscale. Researchers have uncovered an versatile reaction with a ferroelectric gadget, which reacts to light beats in a way that takes after the versatility of neural systems. This behavior may discover application in energy-efficient microelectronics. “Today’s supercomputers and information centers request numerous megawatts of power,” said Haidan Wen, a physicist at the U.S. Office of Vitality (DOE) Argonne National Research facility. “One challenge is to discover materials for more energy-efficient microelectronics. A promising […] - [Major Step Toward Completely 3D-Printed Dynamic Electronics](https://nanodigest.in/major-step-toward-completely-3d-printed-dynamic-electronics/): Analysts take a major step toward completely 3D-printed dynamic electronics : By creating semiconductor-free rationale entryways, which can be utilized to perform computation, analysts trust to streamline the make of electronics. Active hardware — components that can control electrical signals — ordinarily contain semiconductor gadgets that get, store, and prepare data. These components, which must be made in a clean room, require progressed manufacture innovation that is not broadly accessible exterior a few specialized fabricating centers. During the Covid-19 widespread, the need of broad semiconductor manufacture offices was one cause of a around the world hardware deficiency, which drove up […] - [Electronic tongue uncovers AI inward thoughts](https://nanodigest.in/electronic-tongue-uncovers-ai-inward-thoughts/): Electronic tongue uncovers AI inward thoughts: Researchers created an electronic tongue that can recognize different fluid tests utilizing manufactured insights. When inquired to characterize its claim evaluation parameters, the AI might more precisely decipher the information produced by the electronic tongue. A as of late created electronic tongue is able of recognizing contrasts in comparable fluids, such as drain with changing water substance; assorted items, counting pop sorts and coffee mixes; signs of decay in natural product juices; and occurrences of nourishment security concerns. The group, driven by analysts at Penn State, too found that comes about were indeed more precise […] - [Breakthrough in Micelle Innovation](https://nanodigest.in/breakthrough-in-micelle-innovation/): Breakthrough in Micelle Innovation for Compelling Color and Sedate Dispersion: Well-defined core-shell piece copolymer micelles make strides color solubilization and can clear the way for prevalent ink and color formulations. Micelles are round atomic structures ordinarily shaped by amphiphilic particles with square structure, which contain both hydrophilic and hydrophobic parts. The hydrophobic tails of these particles cluster together to shape a center, whereas the hydrophilic heads confront outward, making a defensive shell. This structure permits micelles to typify hydrophobic substances inside their center and scatter them in a water-based environment. An illustration of micelles in activity is in cleanser, which traps […] - [Bubble Discoveries Might open Way Better Cathode and Eelectrolyzer Designs](https://nanodigest.in/bubble-discoveries-might-open-way-better-cathode-and-eelectrolyzer-designs/): Bubble discoveries might open way better cathode and electrolyzer designs. A modern ponder of bubbles on cathode surfaces might offer assistance make strides the effectiveness of electrochemical forms that deliver fills, chemicals, and materials. Industrial electrochemical forms that utilize anodes to deliver fills and chemical items are hampered by the arrangement of bubbles that piece parts of the cathode surface, lessening the range accessible for the dynamic response. Such blockage decreases the execution of the terminals by anyplace from 10 to 25 percent. But unused investigate uncovers a decades-long misconception almost the degree of that obstructions. The discoveries appear precisely how […] - [Nobel prize for New Way in Cancer Treatment](https://nanodigest.in/nobel-prize-for-new-way-in-cancer-treatment/): Nobel prize for New Way in Cancer Treatment: The Nobel Prize in Physiology or Medication 2024. The Nobel Gathering at Karolinska Established has nowadays chosen to grant the 2024 Nobel Prize in Physiology or Pharmaceutical together to Victor Ambros and Gary Ruvkun for the revelation of microRNA and its part in post-transcriptional quality regulation. This year’s Nobel Prize respects two researchers for their revelation of a essential guideline administering how quality action is regulated. The data put away inside our chromosomes can be compared to an instruction manual for all cells in our body. Each cell contains the same chromosomes, so […] - [A Novel Strategy to Deliver Hydrogen](https://nanodigest.in/a-novel-strategy-to-deliver-hydrogen/): A Novel Strategy to Deliver Hydrogen : Scientists are direly looking for clean fuel sources – such as hydrogen – to move towards carbon nonpartisanship. A breakthrough for moving forward the effectiveness of the photocatalytic response that parts water into hydrogen has been made by a group of analysts from Tohoku College, Tokyo College of Science and Mitsubishi Materials Corporation. “Water-splitting photocatalysts can create hydrogen (H2) from as it were daylight and water,” clarifies Teacher Yuichi Negishi, the lead analyst of this extend (Tohoku College), “Be that as it may, the prepare hasn’t been optimized adequately for commonsense applications. If […] - [Nanoparticles Clear the Way for Domestic Stretch Testing](https://nanodigest.in/nanoparticles-clear-the-way-for-domestic-stretch-testing/): Nanoparticles Clear the Way for Domestic Stretch Testing Stress takes different shapes in our every day lives, from tireless work requests to the consistent surge of the school run. But disregarding tall stretch levels can lead to genuine well-being issues like sadness and Alzheimer’s disease. So what if checking your stretch levels at domestic got to be the standard? Much obliged to nanoparticles, this plausibility is drawing closer. In a unused consider distributed in the diary Talanta (“Iridium oxide-modified reference screen-printed anodes for point-of-care convenient electrochemical cortisol discovery,”), a group from China and the UK have delivered a unused and […] - [Breakthrough in Control of Thermal Radiation](https://nanodigest.in/breakthrough-in-control-of-thermal-radiation/): Breakthrough in Control of Thermal Radiation : Metasurfaces control thermal radiation in unprecedented ways in a groundbreaking advance,  researchers at the CUNY Graduate Center Advanced Science and Research Center (CUNY ASRC) have experimentally demonstrated that metasurfaces (two-dimensional materials with nanoscale structures) can precisely control the optical properties of thermal radiation generated within the metasurface itself.  Published in Nature Nanotechnology, this groundbreaking study (“Local control of polarization and geometric phase in thermal metasurfaces”) paves the way for the development of customized light sources with unprecedented capabilities, impacting a wide range of scientific and technological applications. Thermal radiation (a type of electromagnetic […] - [Scientists Created Ultra-Thin Fabric](https://nanodigest.in/scientists-created-ultra-thin-fabric/): Scientists Created Ultra-Thin Fabric : Sun oriented vitality breakthrough might decrease require for sun based farms. Scientists at Oxford College Material science Office have created a progressive approach which may produce expanding sums of sun based power without the require for silicon-based sun powered boards. Instep, their development works by coating a modern power-generating fabric onto the surfaces of ordinary objects such as rucksacks, cars, and portable phones. Their unused light-absorbing fabric is, for the to begin with time, lean and adaptable sufficient to apply to the surface of nearly any building or common question. Utilizing a spearheading procedure created […] - [3D LASER PRINTING WITH BIOINKS FROM MICROALGAE](https://nanodigest.in/3d-laser-printing-with-bioinks-from-microalgae/): 3D LASER PRINTING WITH BIOINKS FROM MICROALGAE: HEIDELBERG Analysts Effectively Create A Modern Era OF BIOCOMPATIBLE MATERIALS FOR Added substance MANUFACTURING. Microalgae such as the diatom Odontella aurita and the green alga Tetraselmis striata are particularly reasonable as “biofactories” for the generation of maintainable materials for 3D laser printing due to their tall substance in lipids and photoactive shades. An worldwide inquire about group driven by Prof. Dr Eva Blasco, a researcher at the Founded for Atomic Frameworks Designing and Progressed Materials (IMSEAM) of Heidelberg College, has succeeded for the to begin with time in fabricating inks for printing complex biocompatible […] - [Analysts Fathom Long-Standing Challenge for Piezoelectric Materials](https://nanodigest.in/analysts-fathom-long-standing-challenge-for-piezoelectric-materials/): Analysts Fathom Long-Standing Challenge for Piezoelectric Materials: Heat and weight can break down the properties of piezoelectric materials that make state-of-the-art ultrasound and sonar advances conceivable – and settling that harm has truly required dismantling gadgets and uncovering the materials to indeed higher temperatures. Presently analysts have created a procedure to reestablish those properties at room temperature, making it simpler to repair these gadgets – and clearing the way for modern ultrasound technologies. Piezoelectric materials have numerous applications, counting sonar advances and gadgets that create and sense ultrasound waves. But for these gadgets to productively produce sonar or ultrasound waves, […] - [Enzyme-Powered ‘Snot Bots’](https://nanodigest.in/enzyme-powered-snot-bots/): Enzyme-powered ‘snot bots’: Snot might not be the to begin with put you’d anticipate nanobots to be swimming around. But this vile discharge exists in more places than fair your nose and heaps of messy tissues — it too lines and makes a difference secure the lungs, stomach, digestion tracts and eyes. And presently, analysts detailing in ACS Nano have illustrated in mice that their little, enzyme-powered “snot bots” can thrust through the protective, sticky layer and possibly provide drugs more efficiently. Snot, known more experimentally as bodily fluid, ensures cells from pathogens and aggravations by catching them in a […] - [A New Kind of Organic Nanoparticle](https://nanodigest.in/a-new-kind-of-organic-nanoparticle/): A new kind of organic nanoparticle: Recent studies have shown that densely connected networks can be developed within organic nanoparticles by hyper branching and chemical cross linking. Nanoparticles have a wide range of applications from drug delivery to electronics to air purification. Their small size and adaptable properties make them particularly valuable for technological advances and scientific research. Grafting polymers made from nanoparticles can improve the functionality of the material. Organic nanoparticles (oNPs) are more chemically versatile than inorganic nanoparticles, allowing for functionalization and adaptation to specific biomedical and technological applications. However, existing materials have limited mechanical properties and chemical adaptability. […] - [A Breakthrough in Materials Science](https://nanodigest.in/a-breakthrough-in-materials-science/): A Breakthrough in Materials Science: Prof. My Ali El Khakani has made a breakthrough in materials science by controlling the optoelectronic properties of MoS films. A global examination group drove by Prof. My Ali El Khakani from the Institut National de la Recherche Scientifique (INRS) has made an astonishing revelation about the properties of molybdenum disulfide, otherwise called MoS. This material is sought after in optoelectronics, the connection point region among optics and gadgets. This study’s findings, which were carried out in conjunction with the group led by Prof. Mustafa Jouiad of the University of Picardie Jules Verne (UPJV), have been […] - [A Hereditary Calculation for Phononic Precious Stones](https://nanodigest.in/a-hereditary-calculation-for-phononic-precious-stones/): A Hereditary Calculation for Phononic Precious stones: The appearance of quantum PCs vows to upset registering by tackling complex issues dramatically more quickly than traditional PCs. In any case, the present quantum PCs face difficulties, for example, keeping up with soundness and moving quantum data. Phonons, which are quantized vibrations in occasional cross sections, offer better approaches to work on these frameworks by improving qubit connections and giving more dependable data transformation. Phonons likewise work with better correspondence inside quantum PCs, permitting the interconnection of them in an organization. Nanophononic materials, which are fake nanostructures with explicit phononic properties, will be […] - [More Efficient Battery Developed for Wearable tech](https://nanodigest.in/more-efficient-battery-developed-for-wearable-tech/): More Efficient Battery Developed for Wearable tech. Researchers have created a more secure, cheaper, superior performing and more adaptable battery alternative for wearable gadgets. A paper portraying the “formula” for their unused battery sort was appeared in the Nano Research Energy Journal on June 3. Fitness trackers. Keen observes. Virtual-reality headsets. Indeed keen clothing and inserts. Wearable shrewd gadgets are all over these days. But for more prominent consolation, unwavering quality and life span, these gadgets will require more noteworthy levels of adaptability and miniaturization of their vitality capacity instruments, which are frequently frustratingly bulky, overwhelming and delicate. On best of […] - [Coordinate Perception of Electron Exchange in Solids](https://nanodigest.in/coordinate-perception-of-electron-exchange-in-solids/): Towards Next-Gen Useful Materials: Coordinate Perception of Electron Exchange in Solids. Researchers have created a unused nanotube precious stone that empowers the coordinate perception of electron exchange in solids. Electron exchange (ET) is a prepare in which an electron is exchanged from one iota or atom to another. ET is principal to electrochemical responses with applications in numerous areas. Nanoscale ET, which includes the exchange of electrons in the run of 1-100 nanometers in solids is essential to the plan of multifunctional materials. In any case, this prepare is not however clearly understood. Nanotubes, nanomaterials with interesting round and hollow nanostructures, […] - [A Modern Way to See Infections in Action](https://nanodigest.in/a-modern-way-to-see-infections-in-action/): A modern way to see infections in action. Stanford analysts uncovered the replication handle of SARS-CoV-2 utilizing super-resolution microscopy, which may have applications for sedate development. A modern, nano-scale see at how the SARS-CoV-2 infection duplicates in cells may offer more noteworthy exactness in medicate advancement, a Stanford College group reports in Nature Communications. Utilizing progressed microscopy methods, the analysts delivered what might be a few of the most fresh pictures accessible of the virus’s RNA and replication structures, which they seen shape round shapes around the core of the contaminated cell. “We have not seen COVID tainting cells at this […] - [On-Chip GHz Time Crystals](https://nanodigest.in/on-chip-ghz-time-crystals/): On-chip GHz time Crystals (gems) empower unused material science and optoelectronics. Researchers have for the to begin with time watched a time precious stone on a microscale semiconductor chip wavering at a rate of a few billion times per moment, disclosing especially tall non-linear flow in the GHz range. The comes about of the test, distributed in Science (“Solid-state ceaseless time precious stone in a polariton condensate with a built-in mechanical clock”), set up a firm association between once in the past uncorrelated zones of non-linear exciton-polariton elements and coherent optomechanics at GHz frequencies, say analysts from the Paul-Drude-Institute for Strong […] - [New Fabricating Strategy Builds Harder Materials](https://nanodigest.in/new-fabricating-strategy-builds-harder-materials/): Nanoscale Building Brings Light-Twisting Materials to more Extraordinary Settings. New fabricating strategy builds harder materials that were already considered futile for turning light into more strong optical devices. Imaging the hot turbulence of air ship drive frameworks may presently be conceivable with strong sheets of composite materials that turn light bars, concurring to inquire about driven by the College of Michigan and Discuss Constrain Investigate Laboratory. The sheets were delivered with a unused fabricating strategy that opens conceivable outcomes past airplane plan, as it empowers modern classes of materials to be utilized in polarization optics. Whereas the group illustrated tall […] - [3D Printing Allows Precise Light Control for Color Composition](https://nanodigest.in/3d-printing-allows-precise-light-control-for-color-composition/): The world’s first 3D printing technology has been developed that can be used on transparent screens and AR devices, which perform physical activities that change the color of a chameleon or the beautiful color of a peacock’s wings. Dr. Jaeyeon Pyo and KERI have succeeded in realizing a three-dimensional diffraction grating that can precisely control the path of light based on ‘nano-scale 3D technology living’. This is a new technology that can use the principles of visible color and nature for advanced display technology. When light encounters the microstructure at a wavelength (1/100 to 1/1000 the thickness of a human […] - [Reveals the anomaly of non-collinear antiferromagnets](https://nanodigest.in/reveals-the-anomaly-of-non-collinear-antiferromagnets/): Researchers from Tohoku University and the Massachusetts Institute of Technology (MIT) have revealed a representative of the effect of anomalous materials (Reveals the anomaly of non-collinear antiferromagnets) at play when electricity is applied to a new class of magnetic materials called antiferromagnets noncollinear. Their findings were published in the journal Nature Materials on August 3, 2023. Magnets are important in today’s society. In recent years, non-collinear antiferromagnets have attracted a lot of attention because of their interesting properties that are different from ordinary magnets. In a traditional collinear magnet, the magnetic moment is linear. However, in those that are not […] - [Less carbon-Intensive Cheaper & More Efficient Nanosensors](https://nanodigest.in/less-carbon-intensive-cheaper-more-efficient-nanosensors/): Macquarie University engineers have developed a new method to make the manufacturing of Less carbon-Intensive, Cheaper & More Efficient Nanosensors, improving key processes in a global billion-dollar industry. The team found a way to process each sensor using a single drop of ethanol instead of the conventional method of heating the material at high temperatures. Their research, which was published yesterday in the Journal of Advanced Functional Materials, is titled “Combination of synthetic materials that make synthetic materials with high UV performance”. “Nanosensors usually consist of billions of nanoparticles placed on a small sensor – but most of these sensors […] - [The Invention Helps Detect Airborne Pathogens in Time](https://nanodigest.in/the-invention-helps-detect-airborne-pathogens-in-time/): MSU and the University of British Columbia have developed a system that uses magnetic levitation to help capture, clean and detect viruses, including the coronavirus, the invention helps detect airborne pathogens in time Researchers from Michigan State University and the University of British Columbia have developed a system that can detect infectious diseases quickly and cheaply using the same technology that allows high-speed trains. The team showed that a technique known as magnetic levitation could be used to collect and concentrate airborne bacteria to help prevent future outbreaks of respiratory disease. The researchers published their work in the journal ACS […] - [High-Security Anti-Counterfeit Tags](https://nanodigest.in/high-security-anti-counterfeit-tags/): Payment fraud is a serious problem that affects many companies – from medicine to electronics, causing huge economic losses, causing security problems and putting health at risk to solve this problem an Engineering team uses diamond microparticles to create high-security anti-counterfeit tags. Prostitutes and anti-business people are now locked in a technological arms race. While anti-counterfeiting tools are becoming increasingly high-tech – including holograms, thermochromic ink and radio frequency identification tags – counterfeit products are becoming increasingly difficult to distinguish from the real thing as counterfeiters use technology and – climb up. 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[Essentials of Nanoscience and Nanotechnology](https://nanodigest.in/product/essentials-of-nanoscience-and-nanotechnology/): What is the technology that impacts space science to material science? What is the technology that supports sportsmen as well as drug makers? The only technology that has contributed for the growth of different is none other than Nanotechnology. But you must have wondering what is the best way understand and use Nanotechnology. Here is your guide to the world of this emerging space. Nano Digest brings you an authentic and most useful book called “Essentials of Nanoscience & Nanotechnology”, written by renowned scholar Dr Narasimha Reddy Katta. [comment]: # (Generated by Hostinger Tools Plugin)