Nanocrystals Could Enable Flexible Electronics
What if materials used in LEDs and implants could be made into nanocrystals? University of Chicago researchers have developed a method to produce them. Researchers at the Universit...
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What if materials used in LEDs and implants could be made into nanocrystals? University of Chicago researchers have developed a method to produce them. Researchers at the Universit...
A molten salt method developed by researchers at UChicago and Argonne could enable more durable materials for printed electronics and flexible devices. Nanocrystals have become so...
Nickel makes perovskite crystals brighter and more stable, enabling flexible screens that capture fine X-ray detail at exceptionally low radiation levels.
Heat Turns Tiny Perovskite Crystals into Unexpected Shapes in a Microfluidic Reactor A new study has shown that tiny crystals designed to emit bright green light can be coaxed into...
Nanodiamonds Give Solid Electrolytes a Four-to-Five-Order Conductivity Boost A pinch of diamond dust has helped transform two sluggish solid salts into substantially better ion con...
Engineered nanomaterials open new possibilities for light-driven hot-carrier chemistry.
Unify order and disorder? This is possible with epitaxial solid solutions, which serve as a platform for understanding new electrocatalysts.
A nanofabricated neutron lens combines sub-200-nanometre nickel rings with diamond optics to sharpen imaging of batteries, polymers and other materials.
Researchers have developed a new method to reveal the collective motion of electrons in one of the most elusive states of matter: the Wigner crystal. Using light, the physicists we...
Combined lattice doping and surface passivation keep perovskite quantum dots stable and brightly emissive up to 80 C, improving their heat resilience.
A new method separates overlapping X-ray snapshots taken femtoseconds apart, opening a way to watch individual nanoparticles as they change.
Discovery reveals a new type of organization in materials and expands our understanding of how complex structures emerge in nature.
A fingernail-sized mold with billions of nanoholes maps metal structure at nanoscale resolution, revealing weaknesses and guiding stronger materials.
A class of hybrid nanoparticles could help address one of nanomedicine’s most persistent problems: how to carry a therapeutic molecule through the body without losing it too early...
Ultrafast flash heating rearranges atoms in a semiconductor, boosting photocurrent up to 50-fold while preserving glass substrates used in solar cells.
Insider Brief New technical disclosures from Penn State and University of Toronto researchers suggest gold could be a foundational platform material for quantum computing, sensing,...
A slender organic crystal becomes 1.7 times brighter and shifts from light blue to yellow under pressure, pointing to new force-sensing materials.
A study of platinum-coated nanoparticles shows how energy balance controls crystal growth The post Understanding core-shell nanoparticle growth appeared first on Physics World.
In a breakthrough that could transform the study of strongly correlated quantum matter, researchers at the University of Basel and the Technical University of Munich have developed...
A new “hive-inspired” nanocatalyst system could make one of chemistry’s most persistent challenges—recovering highly dispersed catalysts after a reaction—far easier. Researchers at...
Single-atom catalysts can function inside living cells while retaining their structure and catalytic activity, extending atomic-scale catalysis from nonliving interfaces into biolo...
A nanoscale gold network makes lunar ilmenite a far more effective catalyst, helping it use sunlight better and boosting carbon dioxide conversion about tenfold.
A common statistical flaw can weaken links between nanoparticle size and performance. A new correction helps reveal the true relationship.
Can a common mineral improve quantum materials? Researchers have replaced polymer-based assembly with mica to create cleaner atomic stacks for future electronics. Scientists from t...
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