Simulations Identify Importance of Atomic-Level Distortions in Certain Fuel Cell Materials
Researchers determine how to design better materials for energy storage.
Researchers determine how to design better materials for energy storage.
The right mix of crystals and light activate unique laser properties in 5-micron spheres of interest to computing and medical experts.
Towards connecting and manipulating quantum states of matter with sound waves
Scientists discovered that a common diarrhea-causing bacterium produces electricity and that hundreds of other bacterial species use this same process.
Researchers create the most complete model yet of complex protein machinery.
By rotating materials commonly used in computer storage devices, scientists found a new way to change their intrinsic properties
Algorithms supporting a “microscope in a computer” tool enable early screening of several major cancers
The SNO+ Experiment, over a mile underground, places new limits on grand unified theories and studies neutrinos from the Sun
Researchers develop design rules that guide the self-assembly of crystals and frameworks into thin sheets for energy storage and other uses
A new electron microscopy technique brings to light a plastic material’s atomic structure and has implications for renewable plastic.
Researchers take cues from nature to form living materials with unprecedented control and versatility.
Researchers design self-assembling nanosheets that mimic the surface of cells.