Discovery of New Materials to Capture Methane
Predicted materials could economically produce high-purity methane from natural gas systems and separate methane from coal mine ventilation systems.
Predicted materials could economically produce high-purity methane from natural gas systems and separate methane from coal mine ventilation systems.
Using artificial nanostructures to control the properties of light could play a prominent role in the future of computing.
Previously unknown role of titanium in subsurface chemistry revealed.
Bacterial biomass found to have an impact.
Designing protein assemblies whose interactions can be manipulated to respond to a single environmental cue.
Advances in how we calculate optical properties of semiconductors shorten the path to improved solar cells and other optoelectronic devices.
Tropical atmospheric data used to test climate model accuracy.
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.
Atomic-Scale, femtosecond time-scale measurements unravel the atomistic pathways and speed limits for copper migration through a nanocrystal.
Gamma-ray detectors built with silicon photomultiplier arrays provide high-resolution 3D imaging for research.