Catalytic function and its efficiency play a significant role in industrial reactions, and consistent reforms are made in the methodology to enhance the large-scale synthesis of drugs, polymers, and ...
Have chemists been optimising the wrong variable for years when it comes to dynamic catalysis? That’s the claim made in a new ...
Nanoparticle catalysts harness the high surface‐to‐volume ratio of nanoscale particles to enhance reaction rates, selectivity and stability in heterogeneous catalysis. The activity of these materials ...
This new cerium-based catalyst interconverts between two oxidation states with distinct chemical properties, enabling two completely different reactions to occur in the same container. Most of the ...
Most of the drugs, plastics, and industrial materials widely used today are produced through chemical reactions. In general, most high-performance and sophisticated substances have complex structures, ...
Low-temperature plasma-assisted catalysis has emerged as a promising approach for activating chemically stable molecules under non-equilibrium conditions.
One of the most promising strategies being investigated to mitigate emissions of carbon dioxide (CO 2)—a byproduct of electricity and heat production, transportation, and other industries—is the ...
Researchers have developed a solar-driven catalyst material that harnesses the energy of a single photon to reduce carbon dioxide and oxidize organic waste at the same time, producing valuable ...
Researchers combined density functional theory, machine-learning-enhanced transition-state calculations, and microkinetic ...