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Peering into Materials Down to the Nanoscale in the COCOON Lab

The COCOON Lab provides a coordinated suite of microscopes that work together to connect macro-scale observations to findings at the nanoscale. This allows researchers to study biological and industrial materials in unprecedented detail, from the macroscale down to the molecular scale.

SourceTufts University·DateJul 9, 2026

Smithsonian-led research shows that scorpions’ weapons are fortified with metal to suit their needs

Researchers at the Smithsonian National Museum of Natural History analyzed 18 scorpion species and found striking patterns in metal concentration and distribution among their pincers and stingers. The study reveals that zinc plays a role beyond hardness, possibly enhancing durability, and provides insight into how organisms adapt to pr...

SourceSmithsonian·JournalJournal of The Royal Society Interface·TypeExperimental study·DateApr 28, 2026
Apple iPhone 17 Pro

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

Finding order in disorder: A new mechanism that amplifies transverse electron transport

A study by researchers at Pohang University of Science & Technology discovered that engineered disorder can amplify transverse electron transport in magnetic materials. The findings suggest that deliberately using disorder in materials design could lead to new opportunities in spintronics and thermoelectric energy-conversion technologies.

SourcePohang University of Science & Technology (POSTECH)·JournalPhysical Review Letters·DateMar 24, 2026

The secret lives of catalysts: How microscopic networks power reactions

Researchers visualized activity across a platinum catalyst with unprecedented detail, revealing coordinated, interconnected systems. Individual crystal grains specialize in different chemical steps, and cooperative electron flows enhance overall reaction efficiency.

SourceUniversity of Warwick·JournalNature Catalysis·TypeExperimental study·DateMar 5, 2026
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.

Elephant trunk whiskers exhibit material intelligence

Researchers discovered functional gradients in elephant and cat whiskers, allowing for precise touch sensing. The stiff-to-soft transition enables elephants to navigate their environment with ease, including picking up delicate objects.

SourceMax Planck Institute for Intelligent Systems·JournalScience·TypeExperimental study·DateFeb 12, 2026

A view into the innermost workings of life: First scanning electron microscope with nanomanipulator inaugurated in hesse at Goethe University

The newly inaugurated cryo plasma-FIB scanning electron microscope with nanomanipulator at Goethe University Frankfurt enables imaging of living cells and provides new insights into cellular structures. Researchers can now visualize protein structures in their natural environment or trace cellular changes in diseases.

SourceGoethe University Frankfurt·DateJan 16, 2026

Coffee as a staining agent substitute in electron microscopy

A team at Graz University of Technology found that espresso is a favourable and environmentally friendly substitute for uranyl acetate, which is highly toxic and radioactive. The results showed equally good quality images under the microscope with coffee staining.

SourceGraz University of Technology·JournalMethods·TypeExperimental study·DateJan 8, 2026
Fluke 87V Industrial Digital Multimeter

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

Understanding sustainable textiles through climate-adapted traditional crafts

Researchers from Okinawa Institute of Science and Technology have catalogued the science behind Bashofu textiles, which have kept Okinawans cool for over 500 years. The study reveals the unique properties of Musa balbisiana var. liukiuensis fibers, including a honeycomb structure that effectively leads sweat away from the skin.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalScientific Reports·TypeExperimental study·DateNov 10, 2025
Davis Instruments Vantage Pro2 Weather Station

Davis Instruments Vantage Pro2 Weather Station offers research-grade local weather data for networked stations, campuses, and community observatories.

Mask users can now breathe easy on two counts

Scientists from the University of Tokyo have created a filter that can capture nanoparticles such as viruses while maintaining air flow, resulting in improved user comfort. The filter uses nanosheets with porphyrin molecules and is capable of achieving a particle filtration efficiency of 96%, exceeding N95 mask requirements.

SourceInstitute of Industrial Science, The University of Tokyo·JournalMaterials Advances·DateMay 20, 2025

Researchers uncover new and surprising traction trait in sculpins

A team of researchers from Syracuse University and the University of Louisiana at Lafayette has discovered a new surface texture on sculpin fins that may enhance their grip in harsh environments. This finding could lead to the development of bio-inspired adhesives for robots, medical devices, and other applications.

SourceSyracuse University·JournalRoyal Society Open Science·DateApr 23, 2025

To build better fiber optic cables, ask a clam

Researchers discovered that heart cockle shells have translucent areas with hair-thin strands that deliver specific wavelengths of light into the bivalves' tissues. This natural system filters out bad wavelengths and channels in optimal wavelengths for photosynthesis, benefiting the clams' symbiotic algae.

SourceDuke University·JournalNature Communications·TypeImaging analysis·DateDec 2, 2024
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.

Electron imaging reveals the vibrant colors of the outermost electron layer

The study reveals that atomic resolution SE imaging can distinguish between surface atomic arrangements with high sensitivity, identifying honeycomb-like structures composed of molybdenum and sulfur atoms. The method's depth sensitivity is also demonstrated by the absorption or scattering of SEs from the second layer.

SourceNagoya University·JournalMicroscopy·DateNov 17, 2024

Green hydrogen: MXenes shows talent as catalyst for oxygen evolution

Researchers have found that MXene catalysts are more stable and efficient than metal oxide compounds for the oxygen evolution reaction. The discovery holds promise for developing low-cost, high-performance electrolysers for producing green hydrogen.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalJournal of Materials Chemistry A·TypeExperimental study·DateSep 9, 2024
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.

Toward a quantum electron microscope: a compact pulse hollow cone hybrid TEM/SEM by CityUHK to revolutionize electron microscopy

A team from City University of Hong Kong has designed a compact hybrid transmission and scanning electron microscope that can operate at room temperature, offering high-resolution imaging capabilities without cryogenic temperatures. The new system reduces radiation damage to samples and provides improved image contrast using pulse elec...

SourceCity University of Hong Kong·DateJul 24, 2024

In-situ observation of nanoscale heat propagation

Researchers at National Institute for Materials Science (NIMS) in Japan developed a new technique to observe heat propagation paths and behavior within material specimens. This technique uses scanning transmission electron microscopy with pulsed electron beams and high-precision temperature measurement devices.

SourceNational Institute for Materials Science, Japan·JournalScience Advances·TypeExperimental study·DateMar 21, 2024

A new world of 2D material is opening up

Researchers at Linköping University have developed a method to synthesize hundreds of new 2D materials, expanding the possibilities for energy storage, catalysis, and water purification. The study uses a three-step process, including large-scale computations and chemical exfoliation, to identify and create suitable materials.

SourceLinköping University·JournalScience·DateMar 14, 2024

Engineered battery chemistry for fast charging capabilities

Researchers successfully improved lithium metal battery charging rates by adding a cesium nitrate compound, while maintaining long cycle life. The new findings challenge conventional beliefs about effective interphase components and contribute to the development of high-energy density batteries.

SourceDOE/Brookhaven National Laboratory·JournalNature Communications·DateJan 26, 2024
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.

Rice engineers tackle hard-to-map class of materials

Researchers have developed a new technique to understand the relationship between atomic structure and electric polarization in 2D van der Waals ferroelectric materials. This discovery is expected to revolutionize domain engineering in these materials, positioning them as fundamental building blocks for advanced devices.

SourceRice University·JournalNature Communications·TypeExperimental study·DateDec 4, 2023

The little things matter: Chemists develop new sensor for microvolume pH detection

Researchers at Xi'an Jiaotong-Liverpool University have developed a sensitive and robust pH sensor that can detect pH variation in just a few microliters of samples. The new sensor uses novel materials and methods to overcome the current method's limitations, which are not sensitive enough or fragile for commercial-scale use.

SourceXi'an Jiaotong-Liverpool University·JournalMicrochimica Acta·TypeExperimental study·DateNov 3, 2023

Using artificial intelligence, Argonne scientists develop self-driving microscopy technique

Researchers at Argonne National Laboratory have developed an autonomous microscopy technique that uses AI to selectively target points of interest for scanning, speeding up the experimental process and allowing for greater efficiency in facilities with limited beam time. This innovative approach has the potential to accelerate scientif...

SourceDOE/Argonne National Laboratory·JournalNature·DateOct 4, 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.

Treatment creates steel alloys with superior strength and plasticity

Researchers at Purdue University have developed a new steel alloy with extraordinary strength and plasticity, achieving a yield strength of about 700 megapascals. The treatment produced ultra-fine metal grains that exhibit super-plasticity, allowing the material to stretch and bend without rupturing.

SourcePurdue University·JournalScience Advances·TypeExperimental study·DateJun 14, 2023

How does a millipede get its legs?

New research reveals that millipede segments contain tiny bundles of legs, which appear as transparent protrusions before molting. This discovery could help understand how not only millipedes but also other arthropods grow and develop.

SourceUniversity of Tokyo·JournalFrontiers in Zoology·TypeObservational study·DateApr 19, 2023

Not all mushrooms are alike

A team of scientists from the Helmholtz-Zentrum Dresden-Rossendorf investigated how four different fungal species interact with europium, a rare earth element. They found that fungi like the Split-Gill can bind up to four times more europium compared to other species, and that the binding site and transport mechanisms differ among them.

SourceHelmholtz-Zentrum Dresden-Rossendorf·JournalScience of The Total Environment·TypeExperimental study·DateDec 20, 2022
GQ GMC-500Plus Geiger Counter

GQ GMC-500Plus Geiger Counter logs beta, gamma, and X-ray levels for environmental monitoring, training labs, and safety demonstrations.

Ancient Roman coins thought to be fakes now authenticated

A new analysis confirms that ancient Roman coins featuring the portrait of 'Sponsian' are genuine, suggesting he was a real leader who ruled Roman Dacia in the 260s CE. The study used advanced microscopy and spectroscopy techniques to analyze the coins and uncover evidence of their authenticity.

SourcePLOS·JournalPLOS ONE·TypeObservational study·DateNov 23, 2022

Ancient Roman coins reveal long-lost emperor

A gold coin long dismissed as a forgery appears to be authentic and depicts Emperor Sponsian, who ruled Roman Dacia during civil wars. The study used scientific analysis to confirm the coin's authenticity, shedding light on Sponsian's history.

SourceUniversity College London·JournalPLOS ONE·TypeImaging analysis·DateNov 23, 2022
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.

New characterization methods developed to identify light elements

Physicists have introduced a new technique for 3D nanoscale elemental analysis using ion-electron microscope systems, improving resolution to 15 nanometres and detecting hard-to-characterise elements like hydrogen and lithium. This device can be retrofitted to existing focused ion beam systems, optimizing the characterisation workflow.

SourceARC Centre of Excellence for Transformative Meta-Optical Systems·JournalNano Letters·TypeExperimental study·DateOct 11, 2022

Deformation fingerprints will help researchers identify, design better metallic materials

Researchers at the University of Illinois have developed a new method to capture and predict the fatigue strength of metallic materials using automated high-resolution electron imaging. This approach allows for rapid prediction of metal failure and breakage, leading to design of safer and more resilient materials for various applications.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalScience·TypeExperimental study·DateSep 19, 2022

Biofinder advances detection of extraterrestrial life

The Biofinder instrument has successfully detected bio-residue in ancient fish fossils from the Green River formation, confirming that biological residues can survive millions of years. The device's capabilities make it an ideal tool for future NASA missions to detect signs of past life on other planetary bodies.

SourceUniversity of Hawaii at Manoa·JournalScientific Reports·TypeImaging analysis·DateJun 24, 2022

Investigating electrons with a traditional scanning microscope

Physicists at FAU have designed a framework to observe light-electron interactions using traditional SEMs, reducing costs and increasing experiment range. This photon-induced electron microscopy (PINEM) technique allows for precise measurements of energy changes in electrons.

SourceFriedrich-Alexander-Universität Erlangen-Nürnberg·JournalPhysical Review Letters·TypeExperimental study·DateJun 7, 2022

Novel strategy to make fast-charging solid-state batteries

Researchers at the Indian Institute of Science discovered that microscopic voids in lithium anodes cause dendrite formation in solid-state batteries. By adding a thin layer of refractory metals to the electrolyte surface, they delayed dendrite growth and extended battery life.

SourceIndian Institute of Science (IISc)·JournalNature Materials·DateJun 2, 2022
Apple iPad Pro 11-inch (M4)

Apple iPad Pro 11-inch (M4) runs demanding GIS, imaging, and annotation workflows on the go for surveys, briefings, and lab notebooks.

Smallest earthquakes ever detected in micron-scale metals

Researchers at Eötvös Loránd University detected smallest earthquakes in micron-scale metals, exhibiting characteristics similar to seismic events. The findings reveal a two-level structure of strain bursts and demonstrate the correlation between acoustic signals and plastic deformation.

SourceEötvös Loránd University·JournalNature Communications·DateApr 14, 2022

NGI uses twist to engineer 2D semiconductors with built-in memory functions

A team of researchers at NGI and NPL demonstrated that slightly twisted 2D transition metal dichalcogenides (TMDs) display room-temperature ferroelectricity. This characteristic can be used to build multi-functional optoelectronic devices with built-in memory functions on a nanometre length scale.

SourceUniversity of Manchester·JournalNature Nanotechnology·DateMar 3, 2022

Study highlights connections between addictive drugs and brain function in mice

Researchers used advanced technology to study dopamine neuron structure, addiction, and brain recovery in mice exposed to cocaine. The study found changes in axon branching and the formation of huge swellings at various locations along the axon, providing new insights into dopamine transmission and addiction.

SourceDOE/Argonne National Laboratory·JournaleLife·TypeObservational study·DateJan 18, 2022
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.

Alginic acid improves artificial bones, study shows

A study published in the Journal of Materials Science: Materials in Medicine found that alginic acid improves artificial bones by increasing porosity, compressive strength, and setting time. The addition of alginic acid to calcium phosphate cement enhances its mechanical properties, allowing for more effective bone replacement.

SourceOsaka City University·JournalJournal of Materials Science Materials in Medicine·TypeNews article·DateAug 11, 2021

Green hydrogen: Why do certain catalysts improve in operation?

Researchers discovered that certain catalyst materials, such as erythrite, improve in performance over time due to restructuring. This process increases the surface area of the material, allowing for more reactions to occur, resulting in higher oxygen yields and doubled electrical current generation.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalAdvanced Energy Materials·DateAug 9, 2021
Kestrel 3000 Pocket Weather Meter

Kestrel 3000 Pocket Weather Meter measures wind, temperature, and humidity in real time for site assessments, aviation checks, and safety briefings.

Novel molecular imaging technique casts complex coordination molecules in a new light!

A team of researchers from Tokyo Institute of Technology developed a novel imaging method using metal-atom tracers in HAADF-STEM to determine the conformational structures of complex polynuclear coordination compounds. The technique achieves accurate visualization of highly branched molecules, filling a gap in structural analysis.

SourceTokyo Institute of Technology·JournalScience Advances·TypeExperimental study·DateAug 6, 2021

In sight: A paradigm shift in materials characterization

Lehigh University researchers are transforming an aberration-corrected scanning transmission electron microscope (STEM) into a synchrotron facility, expanding scientists' ability to characterize material composition and bonding status down to the single-atom level. The new system will have capabilities up to ~13,000 eV and enable the i...

SourceLehigh University·DateJan 5, 2021

New phase for synthetic aperture microscopy

Researchers have developed a novel synthetic aperture microscopy method using digital micromirror devices, achieving high spatial resolution and fast imaging speeds. The technique enables the observation of subcellular dynamics and nanometric structures without harming living cells.

SourceSPIE--International Society for Optics and Photonics·JournalAdvanced Photonics·DateDec 21, 2020

Why shaving dulls even the sharpest of razors

Human hair is 50 times softer than steel yet can cause razor blade chipping and wear. Researchers found that the blade's microstructure and angle of approach to hair play key roles in initiating cracks.

SourceMassachusetts Institute of Technology·JournalScience·DateAug 6, 2020

Bristol leads archaeologists on 5,000-year-old egg hunt

Researchers have uncovered surprising complexity behind ancient ostrich egg production, tracing origins to specific climatic zones and routes. The study also suggests eggs were taken from wild birds' nests despite evidence of captivity, adding luxury value due to risk and storage requirements.

SourceUniversity of Bristol·JournalAntiquity·DateApr 8, 2020
AmScope B120C-5M Compound Microscope

AmScope B120C-5M Compound Microscope supports teaching labs and QA checks with LED illumination, mechanical stage, and included 5MP camera.

Graphene forms under microscope's eye

Researchers at Rice University and Oak Ridge National Laboratory developed a new method to produce laser-induced graphene (LIG) with features more than 60% smaller than traditional macro versions. This technique creates LIG with almost 10 times smaller dimensions, making it ideal for flexible electronics applications. The scientists su...

SourceRice University·JournalACS Applied Materials & Interfaces·DateFeb 12, 2020

Uncovering the presynaptic distribution and profile of mitochondria

Researchers developed innovative methods to image and reconstruct mitochondria at the synaptic level, revealing higher mitochondrial volumes in mature calyx of Held. This finding supports the idea that increased mitochondrial volume enables the high energy demands of a more active mature calyx.

SourceMax Planck Florida Institute for Neuroscience·DateOct 9, 2019

From Japanese basket weaving art to nanotechnology with ion beams

Scientists at the University of Vienna have developed a method to produce ultradense arrays of magnetic quanta in high-temperature superconductors, inspired by traditional Japanese basket weaving art. The research uses a helium-ion microscope to create complex periodic arrangements with dense defect structures, which can be used to stu...

SourceUniversity of Vienna·JournalACS Applied Nano Materials·DateAug 1, 2019

New way of optical visualization of nano objects proposed

Researchers have developed a new way to visualize nano objects using superlenses and titanium oxynitride films, achieving spatial resolutions of 8 nm and 80 nm. This breakthrough enables non-destructive analysis and 3D visualization without the need for fluorescent labels.

SourceKazan Federal University·JournalNanoscale·DateMar 29, 2019
Apple MacBook Pro 14-inch (M4 Pro)

Apple MacBook Pro 14-inch (M4 Pro) powers local ML workloads, large datasets, and multi-display analysis for field and lab teams.

The physics of extracting gas from shale formations

A new study reviews current knowledge on flow processes during shale gas extraction, outlining how pore distribution and geometry affect gas transport. The authors present a model that matches experimental evidence, revealing the impact of rock bottlenecks on gas production.

SourceSpringer·JournalThe European Physical Journal E·DateNov 30, 2018