What Causes High-temperature Superconductivity?
A phase change at absolute zero temperature may provide key insights into the decades-old mystery of high-temperature superconductivity.
A phase change at absolute zero temperature may provide key insights into the decades-old mystery of high-temperature superconductivity.
Nano-structuring may help superconductors overcome a decades-long barrier to use in more powerful motors and magnets.
Advances in how we calculate optical properties of semiconductors shorten the path to improved solar cells and other optoelectronic devices.
Molecular structures provide insights into biomass deconstruction.
Charge-discharge chemistry for lithium ion batteries elucidated by theoretical calculations.
Nano-porous metal oxide coatings on carbon fiber dramatically enhance the electrical storage capacity for supercapacitors.
Assessment shows Midwest could support biomass production while benefiting climate.
Study examines impact of symbiosis on soil processes and nutrient cycling.
Structure and composition of the Solid Electrolyte Interphase in lithium ion batteries was investigated via a unique combination of microscopy and spectroscopy.
Atomic-Scale, femtosecond time-scale measurements unravel the atomistic pathways and speed limits for copper migration through a nanocrystal.
Recent studies reveal that complex ice-ocean interactions affect melting.
Unusual reaction eschews high temperatures and water to lock away climate-changing carbon dioxide.