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Have metalenses expanded their reach into the ultraviolet region?

Researchers at Pohang University of Science & Technology have devised a technique for mass-producing large-area metalenses tailored for use in the ultraviolet region. The breakthrough enables control over optical properties of UV rays, sparking interest in potential advancements for medical devices and wearable technology.

SourcePohang University of Science & Technology (POSTECH)·JournalMaterials Today·DateMar 11, 2024

Powerless mechanoluminescent touchscreen underwater

A team of researchers created an optical display technology using afterglow luminescent particles, enabling writing and erasure of messages underwater. The device exhibits resistance to humidity and maintains functionality even when submerged for prolonged periods.

SourcePohang University of Science & Technology (POSTECH)·JournalAdvanced Functional Materials·DateMar 6, 2024
Apple Watch Series 11 (GPS, 46mm)

Apple Watch Series 11 (GPS, 46mm) tracks health metrics and safety alerts during long observing sessions, fieldwork, and remote expeditions.

When the music changes, so does the dance: Controlling cooperative electronic states in Kagome metals

A team of scientists has developed a novel strain-free approach to investigate the intrinsic electronic ground state of Kagome superconductors. This study provides a unifying picture of the controversial charge order in Kagome metals, highlighting the need for material control at the microscopic scale.

SourceMax Planck Institute for the Structure and Dynamics of Matter·JournalNature Physics·TypeExperimental study·DateFeb 29, 2024

MIT engineers 3D print the electromagnets at the heart of many electronics

Researchers at MIT successfully printed compact, magnetic-cored solenoids using a customized multimaterial 3D printer. The printed solenoids can withstand twice as much electric current and generate a magnetic field three times larger than other 3D-printed devices.

SourceMassachusetts Institute of Technology·JournalVirtual and Physical Prototyping·DateFeb 22, 2024

Researchers harness 2D magnetic materials for energy-efficient computing

MIT researchers precisely controlled an ultrathin magnet at room temperature using pulses of electrical current, switching its magnetization. This breakthrough could lead to faster, more efficient processors and nonvolatile magnetic computer memories with reduced energy consumption.

SourceMassachusetts Institute of Technology·JournalNature Communications·DateFeb 22, 2024

EVs that go 1,000km on a single charge: Gel makes it possible

Researchers from Pohang University of Science & Technology developed a new gel-based battery system using micro silicon particles and gel polymer electrolytes, enabling stable performance even with larger silicon particles. The system exhibits improved energy density and is ready for immediate application.

SourcePohang University of Science & Technology (POSTECH)·JournalAdvanced Science·DateFeb 7, 2024
SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.

Rice scientists pull off quantum coup

Researchers at Rice University have discovered a new material that exhibits both quantum correlations and geometric frustration, resulting in a unique flat band structure. This finding provides empirical evidence of the effect in a 3D material and has implications for understanding exotic features in materials science.

SourceRice University·JournalNature Physics·TypeExperimental study·DateJan 29, 2024

Efficiently moving urea out of polluted water is coming to reality

Researchers at Worcester Polytechnic Institute have developed a material to selectively oxidize urea in water, producing hydrogen gas. The material, made of nickel and cobalt atoms with tailored electronic structures, enables the efficient conversion of urea into hydrogen through an electrochemical reaction.

SourceWorcester Polytechnic Institute·JournalThe Journal of Physical Chemistry Letters·TypeExperimental study·DateJan 18, 2024

Modified soft material promises better bioelectronics

Scientists have developed a new biocompatible material that can conduct electricity efficiently in wet environments and interact with biological media. The modified PEDOT:PSS enables the creation of organic electrochemical transistors (OECTs) with high performance and excellent characteristics.

SourceNorth Carolina State University·JournalMatter·TypeExperimental study·DateJan 16, 2024

Advancing high-speed electromagnetic suspension: a composite control scheme for enhanced stability and track irregularity suppression

A team of researchers developed a composite control scheme to suppress track irregularities in high-speed maglev trains. The scheme uses a refined disturbance observer and prescribed performance fixed-time controller to accurately estimate track irregularities and disturbances.

SourceKeAi Communications Co., Ltd.·JournalHigh-speed Railway·TypeComputational simulation/modeling·DateJan 14, 2024
Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.

Bulky additives could make cheaper solar cells last longer

Engineers have discovered a method to increase the stability of perovskite solar cells using bulky additives, which could enable the production of cheaper solar panels. The study suggests that larger molecules with specific configurations are most effective at preventing defects in the cells.

SourceUniversity of Michigan·JournalCell·DateJan 11, 2024

Researchers create first functional semiconductor made from graphene

A team of researchers led by Walter de Heer at Georgia Institute of Technology has created a functional graphene semiconductor with 10 times the mobility of silicon. This breakthrough technology could enable smaller and faster devices, as well as applications for quantum computing.

SourceGeorgia Institute of Technology·JournalNature·TypeExperimental study·DateJan 3, 2024

Engineers develop a vibrating, ingestible capsule that might help treat obesity

The researchers designed a capsule about the size of a multivitamin, powered by a small battery, which vibrates to activate mechanoreceptors in the stomach. This activation stimulates hormone release patterns similar to those following a meal, reducing food intake and slowing weight gain by 40 percent.

SourceMassachusetts Institute of Technology·JournalScience Advances·DateDec 22, 2023

Are diamonds GaN’s best friend? Revolutionizing transistor technology

Researchers at Osaka Metropolitan University fabricated GaN transistors using diamond substrates, achieving more than twice the heat dissipation of SiC-based transistors. This novel technology has the potential to revolutionize power and radio frequency electronics with improved thermal management capabilities.

SourceOsaka Metropolitan University·JournalSmall·TypeExperimental study·DateDec 21, 2023
CalDigit TS4 Thunderbolt 4 Dock

CalDigit TS4 Thunderbolt 4 Dock simplifies serious desks with 18 ports for high-speed storage, monitors, and instruments across Mac and PC setups.

Responsible stewardship over ultrathin materials research

Researchers at Singapore University of Technology and Design propose a new unifying framework to identify low-risk materials for further development. The team screened 3,000 entries in the materials database to find 25 candidate materials that exhibit high performance and are sustainable at the material level.

SourceSingapore University of Technology and Design·JournalAdvanced Functional Materials·DateDec 14, 2023

Rail industry urged to consider safety risks of space weather

Researchers found that space weather events can trigger 'wrong side' failures in rail signalling systems, which are more hazardous than 'right side' failures. This study highlights the need for the industry to consider the risks of space weather and explore mitigation strategies.

SourceLancaster University·JournalSpace Weather·TypeComputational simulation/modeling·DateDec 11, 2023

Photonic chip that ‘fits together like Lego’ opens door to semiconductor industry

Researchers at the University of Sydney have invented a compact silicon semiconductor chip integrating electronics with photonic components, significantly expanding radio-frequency bandwidth and filter control. The new technology has potential applications in advanced radar, satellite systems, wireless networks, and telecommunications,...

SourceUniversity of Sydney·JournalNature Communications·TypeExperimental study·DateNov 30, 2023
Nikon Monarch 5 8x42 Binoculars

Nikon Monarch 5 8x42 Binoculars deliver bright, sharp views for wildlife surveys, eclipse chases, and quick star-field scans at dark sites.

A novel lightweight wearable device to perform balance exercises at home

Researchers developed a lightweight wearable balance exercise device to improve reactive postural control in older adults, reducing the risk of falls. The device uses pneumatic artificial muscles to generate unexpected perturbations, resulting in improved peak displacement and velocity.

SourceTokyo University of Science·JournalIEEE Journal of Translational Engineering in Health and Medicine·TypeExperimental study·DateNov 27, 2023

Flexing the lifespan of electronic devices

A team of researchers from Northwestern University and the University of Pittsburgh has received a $600K NSF Award to explore novel learning-enabled cyber-physical systems (LE-CPSs) for building flexibility into hardware. This could lead to extended device lifespan, reduced e-waste, and improved sustainability.

SourceUniversity of Pittsburgh·DateNov 14, 2023
Sky-Watcher EQ6-R Pro Equatorial Mount

Sky-Watcher EQ6-R Pro Equatorial Mount provides precise tracking capacity for deep-sky imaging rigs during long astrophotography sessions.

Physicists trap electrons in a 3D crystal for the first time

Researchers successfully trapped electrons in a three-dimensional material, creating an electronic flat band that can lead to exotic behavior such as superconductivity. The kagome-inspired geometry of the crystal allows for stable trapping of electrons in all three dimensions.

SourceMassachusetts Institute of Technology·JournalNature·DateNov 8, 2023

Smartphone attachment could increase racial fairness in neurological screening

A smartphone attachment developed by UC San Diego engineers can screen for neurological conditions like Alzheimer's disease and traumatic brain injury at low cost, accurately regardless of skin tone. The technology uses far-red light to enhance visibility of the pupil, making it easier to track changes in eye movement.

SourceUniversity of California - San Diego·JournalScientific Reports·DateOct 24, 2023

How to build greener data centers? Scientists say crank up the heat

Scientists propose new temperature guidelines for data centers that may help reduce energy consumption and save money. Researchers found that raising the temperature to around 41°C could lead to significant savings, with some areas able to rely entirely on free-cooling, reducing energy costs by up to 56%.

SourceCell Press·JournalCell Reports Physical Science·TypeComputational simulation/modeling·DateOct 18, 2023
GoPro HERO13 Black

GoPro HERO13 Black records stabilized 5.3K video for instrument deployments, field notes, and outreach, even in harsh weather and underwater conditions.

Miniaturized FSO breakthrough unlocks high-speed wireless communication anywhere

Researchers at Nanjing University have developed a miniaturized FSO system achieving an astonishing 9.16 Gbps bandwidth over 1 km link using readily available commercial fiber transceiver modules. The system enables automatic tracking and precision acquisition, eliminating the need for optical amplification.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics Nexus·DateOct 17, 2023

The world has a food-waste problem. Can this wireless tech help fix it?

A team from Princeton University and Microsoft Research developed a fast and accurate method to determine fruit quality using high-frequency wireless technology. This system promises to help reduce food waste by sorting good fruit from bad bunches and ripening fruits more efficiently, according to the new study.

SourcePrinceton University, Engineering School·TypeExperimental study·DateOct 13, 2023

Rice-engineered material can reconnect severed nerves

Researchers have created a magnetoelectric material that can directly stimulate neural tissue, potentially treating neurological disorders and nerve damage. The material generates an electric signal that neurons can detect, overcoming previous limitations.

SourceRice University·JournalNature Materials·TypeExperimental study·DateOct 10, 2023

Interdisciplinary Rice team tackles the future of semiconductors

The interdisciplinary team, led by Kaiyuan Yang, will focus on leveraging the spin and charge of electrons in multiferroics to process and store information. The goal is to improve energy efficiency for computing devices, potentially reducing energy consumption by three orders of magnitude.

SourceRice University·DateOct 5, 2023
Aranet4 Home CO2 Monitor

Aranet4 Home CO2 Monitor tracks ventilation quality in labs, classrooms, and conference rooms with long battery life and clear e-ink readouts.

Examining the superconducting diode effect

A team of researchers reviewed the superconducting diode effect, which enables dissipationless supercurrent flow in one direction. The study highlights potential applications for quantum technologies in both classical and quantum computing.

SourceARC Centre of Excellence in Future Low-Energy Electronics Technologies·JournalNature Reviews Physics·TypeExperimental study·DateOct 2, 2023

Novel battery technology with negligible voltage decay developed at CityU, a world’s first

A breakthrough in battery technology has been achieved by City University of Hong Kong, overcoming the persistent challenge of voltage decay in lithium-ion batteries. The new development stabilises a unique honeycomb-like structure within the cathode material, resulting in longer-lasting and more efficient batteries.

SourceCity University of Hong Kong·JournalNature Energy·TypeExperimental study·DateSep 28, 2023

Electrons take flight at the nanoscale

A new device design inspires improved integrated circuit designs by visualizing electric current flow lines around sharp bends. The research enables better understanding of heat generation in electronic devices, leading to more efficient circuit creation and reduced risk of overheating.

SourceUniversity of California - Riverside·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateSep 18, 2023

Gwangju Institute of Science and Technology researchers reveal the effect of AIN surface pits on GaN remote epitaxy

GIST researchers found that nano-sized pits on AlN surfaces cause graphene degradation at higher temperatures, leading to GaN film exfoliation failure. The study's results demonstrate the importance of substrate chemical and topographic properties for successful remote epitaxy.

SourceGIST (Gwangju Institute of Science and Technology)·JournalACS Nano·TypeExperimental study·DateSep 12, 2023

Magnetic whirls pave the way for energy-efficient computing

By increasing skyrmion diffusion, researchers have made a significant step towards developing spin-based, unconventional computing. The use of synthetic antiferromagnets has reduced energy consumption and increased speed, making it possible to create more efficient computers.

SourceJohannes Gutenberg Universitaet Mainz·JournalNature Communications·DateSep 11, 2023
Rigol DP832 Triple-Output Bench Power Supply

Rigol DP832 Triple-Output Bench Power Supply powers sensors, microcontrollers, and test circuits with programmable rails and stable outputs.

Improving transistor performance through perovskite-cation incorporation

Researchers at Pohang University of Science & Technology developed world-class perovskite transistors by combining three distinct perovskite cations, achieving high hole mobility and on/off current ratio. This breakthrough enables faster computing with lower power consumption.

SourcePohang University of Science & Technology (POSTECH)·JournalNature Electronics·DateSep 10, 2023

High-fidelity transmission of information via novel electronic-optical system

A hybrid system of electronic encoding and diffractive optical decoding transmits optical information with high fidelity through random, unknown diffusers. The system outperforms traditional approaches that only utilize a diffractive optical network or an electronic neural network for optical information transfer.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics·DateAug 28, 2023

Layered and traditional semiconductors heterogenous integration open door for post Moore era

Scientists have demonstrated techniques to fabricate layered semiconductors with suitable bandgap and band structure, offering a new class of materials in photoelectronic applications. Heterogeneous integration of TMDs and traditional semiconductors enables the exploration of next-generation electronic and optoelectronic devices.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateAug 16, 2023

Arrays of quantum rods could enhance TVs or virtual reality devices

Researchers develop a new method to assemble arrays of quantum rods onto patterned DNA scaffolds, enabling precise control over light emission and polarization. This breakthrough could enhance virtual reality devices and microLEDs with improved depth and dimensionality.

SourceMassachusetts Institute of Technology·JournalScience Advances·DateAug 11, 2023
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C)

Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.

Unveiling the potential of radiofrequency-operated 2D biochemical sensor in the internet-of-things era

Researchers have developed ultra-thin and flexible 2D biochemical sensors with high sensitivity for detecting target substances, revolutionizing sensing technology. However, integrating these sensors into comprehensive systems for large-scale industrial manufacturing poses significant challenges.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateJul 27, 2023

New material could hold key to reducing energy consumption in computers and electronics

Researchers at the University of Minnesota have created a thin film of a unique semimetal material that can generate more computing power and memory storage while using significantly less energy. The study, published in Nature Communications, has important findings about the physics behind its unique properties.

SourceUniversity of Minnesota·JournalNature Communications·TypeExperimental study·DateJul 13, 2023

New design rule for high-entropy superionic solid-state conductors

Researchers from Tokyo Tech have developed a new strategy to produce solid electrolytes with enhanced lithium-ion conductivity, preserving their superionic conduction pathways. The proposed design rule enables the synthesis of high-entropy active materials for millimeter-thick battery electrodes.

SourceTokyo Institute of Technology·JournalScience·TypeExperimental study·DateJul 6, 2023
Celestron NexStar 8SE Computerized Telescope

Celestron NexStar 8SE Computerized Telescope combines portable Schmidt-Cassegrain optics with GoTo pointing for outreach nights and field campaigns.

Researchers create highly conductive metallic gel for 3D printing

Scientists have developed a metallic gel that allows for highly conductive 3D printing at room temperature. The gel, which is 97.5% metal, enables the creation of electronic components and devices with unprecedented conductivity.

SourceNorth Carolina State University·JournalMatter·TypeExperimental study·DateJul 5, 2023

Redox-based transistor as a reservoir system for neuromorphic computing

Researchers develop an ionic device utilizing redox reactions to achieve a high number of reservoir states, enabling efficient complex nonlinear operations. The device demonstrated remarkable performance in solving second-order nonlinear dynamic equations and predicting future values with low mean square prediction error.

SourceTokyo University of Science·JournalAdvanced Intelligent Systems·TypeExperimental study·DateJul 3, 2023

Physicists discover a new switch for superconductivity

Researchers found that iron selenide undergoes a collective shift in orbital energy during the nematic transition, rather than coordinated spin shifts. This discovery opens up new avenues for discovering unconventional superconductors and improving existing materials.

SourceMassachusetts Institute of Technology·JournalNature Materials·DateJun 22, 2023

Novel ferroelectrics for more efficient microelectronics

Researchers at Carnegie Mellon University and Penn State University have discovered novel ferroelectric materials that can switch at the atomic level, enabling more efficient microelectronics. The findings hold promise for applications such as non-volatile memory, electro-optics, and energy harvesting.

SourceCollege of Engineering, Carnegie Mellon University·JournalScience·DateJun 9, 2023
Fluke 87V Industrial Digital Multimeter

Fluke 87V Industrial Digital Multimeter is a trusted meter for precise measurements during instrument integration, repairs, and field diagnostics.

New method takes the uncertainty out of oxide semiconductor layering

Researchers at The University of Tokyo have developed a new atomic layer deposition (ALD) technique for depositing thin layers of oxide semiconductor materials, resulting in high carrier mobility and reliability. This breakthrough enables the production of devices with normally-off operation, high mobility and reliability.

SourceInstitute of Industrial Science, The University of Tokyo·DateJun 8, 2023

A passage of light leading to a path for a solution

A team of researchers successfully controlled 'trions,' a breakthrough toward developing revolutionary optical communication technology. They used a nanoscale plasmonic waveguide to create high-purity trions, which offer advantages over excitons in practical device applications.

SourcePohang University of Science & Technology (POSTECH)·JournalNature Communications·DateMay 15, 2023

MIT engineers “grow” atomically thin transistors on top of computer chips

Researchers at MIT have successfully grown layers of 2D transition metal dichalcogenide materials directly onto silicon chips at low temperatures, paving the way for denser and more powerful computer chips. This new technology allows for faster and more uniform growth of these materials, enabling larger-scale integration.

SourceMassachusetts Institute of Technology·JournalNature Nanotechnology·DateApr 28, 2023
Garmin GPSMAP 67i with inReach

Garmin GPSMAP 67i with inReach provides rugged GNSS navigation, satellite messaging, and SOS for backcountry geology and climate field teams.

Fabrication and applications of van der Waals heterostructures

The article discusses the fabrication and applications of van der Waals heterostructures (vdWHs), which have unique properties and potential for exploring condensed matter physics. Various strategies for fabricating vdWHs were developed in the past decade, leading to promising functionalities in diverse fields.

SourceInternational Journal of Extreme Manufacturing·JournalInternational Journal of Extreme Manufacturing·DateApr 25, 2023

From sheets to stacks, new nanostructures promise leap for advanced electronics

Scientists have successfully engineered multi-layered nanostructures of transition metal dichalcogenides to form junctions, enabling the creation of tunnel field-effect transistors (TFETs) with ultra-low power consumption. The method is scalable over large areas, making it suitable for implementation in modern electronics.

SourceTokyo Metropolitan University·JournalACS Nano·DateApr 22, 2023

Now you can be comfortable in your e-skin

Osaka University researchers develop a cellulose-based material, called nanopaper e-skin, that makes effective contact with the skin while maintaining breathability and comfort. The substrate can withstand deformation, sterilization, and environmental sustainability, making it a promising candidate for electrophysiological monitoring.

SourceOsaka University·JournalAdvanced Materials Interfaces·TypeExperimental study·DateApr 18, 2023
Creality K1 Max 3D Printer

Creality K1 Max 3D Printer rapidly prototypes brackets, adapters, and fixtures for instruments and classroom demonstrations at large build volume.

AI “brain” created from core materials for OLED TVs

Researchers at Pohang University of Science & Technology have created a high-performance AI semiconductor device using IGZO, achieving over 98% accuracy in handwritten data classification. The new device's design enables efficient linear and symmetric programming, making it suitable for large-scale AI applications.

SourcePohang University of Science & Technology (POSTECH)·JournalAdvanced Electronic Materials·DateMar 24, 2023