电合成
催化作用
过氧化氢
金属
块(置换群论)
纳米技术
材料科学
组合化学
化学
化学工程
电化学
有机化学
冶金
物理化学
电极
工程类
几何学
数学
作者
Hao Liang,Shiyong Qin,Yanlong Yu,Wei Meng,Haijuan Dong,Xin He,Jianqiu Chen,Sijin Zuo,Yinqiao Zhang,Yujue Wang
标识
DOI:10.1002/adma.202510356
摘要
Abstract Electrosynthesis of hydrogen peroxide (H 2 O 2 ) via the oxygen reduction reaction (ORR) offers a sustainable alternative for the traditional anthraquinone method. p ‐block metals exhibit unique electronic structures and tunable surface properties, showing great potential in 2e − ORR. However, a systematic review focusing on recent progress in p ‐block metal‐based electrocatalysts for H 2 O 2 synthesis is lacking. To fill the gap, this work first shows a marked increase in p ‐block metal research over the past decade by bibliometric analysis of over 300 publications. Research on 2e − ORR has surged since 2019, while research on 2e ‒ water oxidation reaction (WOR) has declined. Strategies for the synthesis and optimization of various p ‐block metal‐based catalysts are discussed in detail. Based on a synthesis of DFT calculations in the literature, the reaction mechanisms of p ‐block metal catalysis proceeding are summarized via a 2e − pathway. Finally, considering the merits and limitations of different metals, this review outlines the primary challenges and future directions in this area, emphasizing the importance of improving catalyst stability, deepening mechanistic understanding, and developing cost‐effective synthesis methods. It also offers novel perspectives on the engineering of p ‐block metal‐based catalysts and promotes the development of sustainable H 2 O 2 electrosynthesis technologies.
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