Korean researchers have developed a new platinum-nickel catalyst that can operate continuously for 3,000 ...
Researchers have developed a highly durable platinum–nickel catalyst for anion exchange membrane water electrolysis ...
The institute stated that the development of this robust, earth-abundant catalyst can help power a sustainable energy future.
Electrolyzers are devices that can split water into hydrogen and oxygen using electricity and via a process known as electrolysis. In the future, these devices could help to produce hydrogen gas from ...
A platinum–nickel catalyst suppresses nickel loss, limiting performance degradation to below 2% in a practical-scale ...
By combining cobalt, nickel, and graphite, using molecular precursor engineering, researchers have engineered a low-cost, ...
Cellulose-derived carbon dots improve CdS light absorption and charge transfer, boosting visible-light hydrogen production by ...
Hydrogen production from water splitting includes cathodic hydrogen evolution reaction (HER) and anodic oxygen evolution reaction (OER), which has the characteristics of green environmental protection ...
Electrocatalytic hydrogen evolution using molybdenum phosphide (MoP) has emerged as a leading approach to sustainable hydrogen production. As a non-noble-metal catalyst, MoP combines high electrical ...
Electrocatalysis of the hydrogen evolution reaction (HER) is central to sustainable hydrogen production via water electrolysis. This multi-step process typically involves proton or water reduction at ...
A new path has opened to producing ammonia — a key fertilizer ingredient and a promising energy carrier for the future hydrogen economy — at room temperature ...