碱性电催化氧化氢反应的研究进展:机理、催化剂设计及展望

IF 20.3 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Jie Wu , Zhenhui Kang , Xiao Zhang
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引用次数: 0

摘要

阴离子交换膜燃料电池(aemfc)已成为电化学器件研究的一个热点,主要是由于阴极催化剂的发展取得了显著进展。一个关键的挑战是阳极的碱性氢氧化反应(HOR)缓慢,反应速率明显低于酸性反应,不可避免地导致催化剂成本的显著增加。为了解决这个问题,研究人员最近探索了碱性HOR的新型HOR催化剂,表明了对碱性HOR催化剂的蓬勃发展的兴趣,并强调了总结这些发展以指导未来催化剂设计的紧迫性。本文概述了碱性HOR的关键理论框架,特别是氢结合能(HBE)理论、双功能理论和界面水(H2O)相关理论。这对指导催化剂的设计和机理研究具有重要意义。它提供了当前的设计策略和催化剂性能的最新突破的详细分析,揭示了增强催化剂稳健性和活性的潜在原因。综述了评价碱性HOR性能的注意事项,强调了进一步探索机理和催化剂设计的未来方向。它进一步强调需要创新的方法来加深我们对反应机制的理解,提高碱性HOR技术的效率和可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent progress in alkaline electrocatalytic hydrogen oxidation reaction: Mechanisms, catalysts design and perspectives

Recent progress in alkaline electrocatalytic hydrogen oxidation reaction: Mechanisms, catalysts design and perspectives

Recent progress in alkaline electrocatalytic hydrogen oxidation reaction: Mechanisms, catalysts design and perspectives
Anion-exchange membrane fuel cells (AEMFCs) have become a focal point of research within electrochemical devices, driven by remarkable advancements in the development of cathode catalysts. A key challenge is the sluggish alkaline hydrogen oxidation reaction (HOR) in the anode, with reaction rates significantly lower than its acidic counterpart, inevitably leading to a significant increase in catalyst costs. To address this issue, researchers have recently explored novel HOR catalysts for alkaline HOR, demonstrating the booming interest in alkaline HOR catalysts and highlighting the urgency of summarizing these developments to guide future catalyst design. This review outlines crucial theoretical frameworks for alkaline HOR, specifically hydrogen binding energy (HBE) theory, bifunctional theories, and interfacial water (H2O)-related theories. These are vital for guiding catalyst design and mechanism investigation. It provides a detailed analysis of current design strategies and recent breakthroughs in catalyst performance, revealing underlying reasons that enhance catalyst robustness and activity. The review also highlights considerations for evaluating alkaline HOR performance, emphasizes further exploring mechanisms, and developing future direction for catalyst designs. It further stresses the need for innovative approaches to deepen our understanding of reaction mechanisms and improve efficiency and sustainability in alkaline HOR technology.
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来源期刊
Coordination Chemistry Reviews
Coordination Chemistry Reviews 化学-无机化学与核化学
CiteScore
34.30
自引率
5.30%
发文量
457
审稿时长
54 days
期刊介绍: Coordination Chemistry Reviews offers rapid publication of review articles on current and significant topics in coordination chemistry, encompassing organometallic, supramolecular, theoretical, and bioinorganic chemistry. It also covers catalysis, materials chemistry, and metal-organic frameworks from a coordination chemistry perspective. Reviews summarize recent developments or discuss specific techniques, welcoming contributions from both established and emerging researchers. The journal releases special issues on timely subjects, including those featuring contributions from specific regions or conferences. Occasional full-length book articles are also featured. Additionally, special volumes cover annual reviews of main group chemistry, transition metal group chemistry, and organometallic chemistry. These comprehensive reviews are vital resources for those engaged in coordination chemistry, further establishing Coordination Chemistry Reviews as a hub for insightful surveys in inorganic and physical inorganic chemistry.
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