
Cooperative Carbon Capture by a Novel Material that Mimics a Plant Enzyme
Innovative materials adsorb carbon dioxide via an unprecedented cooperative insertion mechanism.
Innovative materials adsorb carbon dioxide via an unprecedented cooperative insertion mechanism.
Researchers determine the reaction pathway to how soot and other toxic components form in combustion systems.
X-ray pulses from the Linac Coherent Light Source probe the molecular dynamics of photoexcitation.
Study reveals peculiar mechanism of radical addition-elimination, enabling more accurate modeling of combustion and other reactions.
Hot nanostructures cool faster when they are physically close together.
For the first time, researchers detect how light excites electrons in metal.
Unusual structure, bonding, and properties may provide a new possibility for a californium borate.
Imaging of cerium oxide nanocrystals provides new insights into the different behaviors of catalyst for emission control, other uses.
Tiny semiconducting crystals show promise for solar cell architectures and light-emitting devices.
Concentrating noble-metal catalyst atoms on the surface of porous nano-frame alloys shows over thirty-fold increase in performance.
New technique allows scientists to observe the dynamic structural changes of single biomolecules in solution.
Studying the photodetachment of a stable anion provides an experimental-theoretical benchmark of the chemical dynamics.