A research team led by Dr. Dandan Gao from the Department of Chemistry at Johannes Gutenberg University Mainz (JGU) has ...
Perspectives for chemical-assisted water electrolysis provide valuable insights into innovative catalyst design strategies and outline future directions for achieving low-voltage and high-efficiency ...
Producing green hydrogen efficiently and affordably remains a major challenge for the global energy transition, particularly in acidic water ...
Roadmap of Dual-Value Electrosynthesis. This schematic illustrates the integrated framework of advanced electrosynthesis systems that couple oxygen evolution reaction (OER) alternatives with reduction ...
Researchers developed a catalyst that enhances the stability of alkaline water electrolysis systems. A research team consisting of Professor Yong-Tae Kim, Dr. Sang-Mun Jung, and Yoona Kim, an MSc, ...
To achieve future carbon neutrality, it is crucial to generate hydrogen from clean sources, like splitting water molecules using electricity through electrolysis. Unfortunately, existing methods are ...
Hydrogen is widely seen as a key energy source for the future, which makes it critical to understand how water is split during electrolysis ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results