The result is a set of nearly spherical nanoparticles about 200 nm in diameter, firmly anchored to the support. Chemical ...
An international study, involving researchers from the University of Tartu Institute of Chemistry, was recently published in ...
Due to the intense global impact of fossil fuel overuse on air quality and climate, the search for advanced clean energy ...
Scientists have directly measured the minuscule electron sharing that makes precious-metal catalysts so effective. Their new technique, IET, reveals how molecules bind and react on metal surfaces with ...
New Lehigh University–East China University of Science & Technology research collaboration proposes novel method of molecular-level control to double the efficiency of widely used industrial catalysts ...
Water electrolysis is a cornerstone of global sustainable and renewable energy systems, facilitating the production of hydrogen fuel. This clean and versatile energy carrier can be utilized in various ...
A groundbreaking catalyst has been unveiled by scientists, enabling the direct conversion of methane into bioactive compounds ...
Discover how Professor Sarah Haigh uses electron microscopy to advance material science, from 2D materials to catalysts, with ...