过氧化氢
化学
电催化剂
电化学
组合化学
光化学
无机化学
电极
有机化学
物理化学
作者
Alagar Raja Kottaichamy,Thamaraichelvan Marichelvam,Jonathan Tzadikov,Roni Cohen Vaza,Michael Volokh,S. Barzilai,Menny Shalom
标识
DOI:10.1002/ange.202502735
摘要
Hydrogen (H2) production through water electrolysis is a promising route for sustainable energy storage. However, conventional water electrolysis faces several challenges, such as large thermodynamic potential gaps and sluggish oxygen evolution kinetics, which lead to high electricity consumption and limitations in H2 storage and transportation. A promising approach to overcoming these hurdles is hybrid water electrolysis, which integrates alternative, thermodynamically favorable reactions at the anode to enhance efficiency. In this study, we explore how peroxide redox electrocatalysis can address critical barriers in sustainable H2 production, storage, and transport. By leveraging a cost‐effective and highly efficient peroxide redox electrocatalyst, we demonstrate various electrolysis configurations that significantly reduce the required cell voltage—from the standard 1.23 V down to –0.06 V, highlighting its potential for scalable and economically viable electrolysis methodologies for H2 production.
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