电催化O2还原合成H2O2的催化剂及机制研究进展OA
Research Progress in Catalysts and Mechanism of Electrocatalytic Reduction of Oxygen to Hydrogen Peroxide
过氧化氢(H2O2)是一种环境友好型的化学品,具有强氧化能力,在消毒杀菌、环境处理、化学化工等领域被广泛应用.目前,工业生产H2O2主要依靠传统工艺,受困于诸多挑战,如蒽醌法能耗高、污染大,H2/O2混合法技术风险大、易爆炸.因此,迫切需要一种绿色、便捷、条件温和且可分散制取的方法来合成H2O2.二电子氧气还原反应(2e-oxygen reduction reaction,2e-ORR)是一种以可再生电力驱动的、在温和条件下合成H2O2的绿色可持续的方法.4e-路径的强烈竞争降低了 H2O2的选择性,导致产量和法拉第效率均低.因此,设计和开发高选择性的2e-ORR催化剂,以实现专一的H2O2合成路径,从而实现规模应用和升级工业合成路线,是目前急需解决的问题.尽管现阶段发展的2e-ORR催化剂已经取得显著进展,但距离规模化应用仍存在很大差距.基于此,对电催化2e-ORR合成H2O2的最新研究进展进行了综述.首先,介绍电催化合成H2O2的催化剂研究情况;其次,分析讨论催化机制及其影响催化性能的关键因素;最后,针对面临的关键问题提出提高电催化性能的策略及未来展望.
Hydrogen peroxide(H2O2)is an environmentally friendly chemical with strong oxidizing ability,which is widely used in the fields of disinfection and sterilization,environmental treatment,and chemical chemistry.Currently,the industrial production of H2O2 mainly relies on traditional processes,which are plagued by many challenges,such as the anthraquinone method with high ener-gy consumption and pollution,and the H2/O2 mixing method with high technological risks and easy to explode.Therefore,there is an urgent need for a green,convenient method to synthesize H2O2 under mild conditions and decentralized production.2e-Oxygen Re-duction Reaction(2e-ORR)is a renewable electric power-driven synthesis of H2O2 under mild conditions in a green and sustainable method.Strong competition for the four-electron pathway reduces the selectivity of H2O2,leading to low yields and Faraday efficien-cies.Therefore,the design and development of highly selective 2e-ORR catalysts for a dedicated H2O2 synthesis pathway for scale-up applications and upgraded industrial synthesis routes is an urgent issue.Although the 2e-ORR catalysts developed at this stage have made remarkable progress,there is still a big gap between them and the scale-up application.This paper reviews the recent research progress in electrocatalytic 2e-ORR generation of hydrogen peroxide.Firstly,it introduces the research on catalysts for electrocatalytic synthesis of hydrogen peroxide.Secondly,it analyzes and discusses the catalytic mechanism and its key factors affecting the catalytic performance,and finally,it proposes the strategies to improve the electrocatalytic performance and the future outlook in view of the key problems faced.
李权;隋煜君;方振宇;董凯;孙旭平
四川师范大学化学与材料科学学院,四川成都 610066山东师范大学化学化工与材料科学学院,山东济南 250014四川师范大学化学与材料科学学院,四川成都 610066四川师范大学化学与材料科学学院,四川成都 610066电子科技大学基础与前沿研究院,四川成都 610054
化学
H2O2催化剂O2还原反应电化学密度泛函理论
hydrogen peroxide(H2O2)catalystsoxygen reduction reactionelectrochemistrydensity functional theory
《四川师范大学学报(自然科学版)》 2025 (2)
154-165,12
国家自然科学基金(22072015)
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