This Review provides an overview of the emerging concepts of catalysts, membranes, and membrane electrode assemblies (MEAs) for water electrolyzers with anion-exchange …
S Xu, Q Wu, BA Lu, T Tang, JN Zhang… - Acta Phys.-Chim. Sin, 2023 - whxb.pku.edu.cn
Green hydrogen is obtained by electrochemical water splitting using electricity converted from renewable energy sources. When green hydrogen undergoes combustion, it produces …
JY Fang, QZ Zheng, YY Lou, KM Zhao, SN Hu… - Nature …, 2022 - nature.com
The development of electrocatalysts capable of efficient reduction of nitrate (NO3−) to ammonia (NH3) is drawing increasing interest for the sake of low carbon emission and …
Ruthenium exhibits comparable or even better alkaline hydrogen evolution reaction activity than platinum, however, the mechanistic aspects are yet to be settled, which are elucidated …
M Li, X Zheng, L Li, Z Wei - Acta Phys.-Chim. Sin, 2021 - researchgate.net
Hydrogen oxygen fuel cells and water electrolysis serves as two important systems for realizing the recycling of hydrogen energy, which involves two crucial electrochemical …
The platinum-catalysed hydrogen evolution reaction (HER) generally shows poorer kinetics in alkaline electrolyte and represents a key challenge for alkaline water electrolysis. In the …
Hydrogen energy-based electrochemical energy conversion technologies offer the promise of enabling a transition of the global energy landscape from fossil fuels to renewable energy …
Electrocatalytic water splitting plays a pivotal part towards the construction of sustainable and environmental benign energy conversion and generation sector that ultimately …
M Tayyab, Y Liu, Z Liu, Z Xu, W Yue, L Zhou… - Chemical Engineering …, 2023 - Elsevier
The development of renewable hydrogen production methods is crucial to recognizing the hydrogen economy that may solve global environmental and energy concerns …