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理解镍基催化剂上关键吸附物种在碱性介质中高效氢氧化反应的作用及调控方法。

Understanding the Roles and Regulation Methods of Key Adsorption Species on Ni-Based Catalysts for Efficient Hydrogen Oxidation Reactions in Alkaline Media.

作者信息

Li Jinchi, Yu Shuqi, Qing Chen, Wang Yao, Chen Yungui

机构信息

Institute of New Energy and Low-Carbon Technology, Sichuan University, Chengdu, 610065, PR China.

Engineering Research Center of Alternative Energy Materials & Devices, Ministry of Education, Chengdu, 610065, PR China.

出版信息

ChemSusChem. 2025 Feb 1;18(3):e202401346. doi: 10.1002/cssc.202401346. Epub 2024 Nov 7.

Abstract

This review focuses on recent advancements in the development and understanding of nickel-based catalysts for the hydrogen oxidation reaction in alkaline media. Given the economic and environmental limitations associated with platinum group metals, nickel-based catalysts have emerged as promising alternatives due to their abundance, lower cost, and comparable catalytic properties. The review begins with an exploration of the fundamental HOR mechanisms, emphasizing the key roles of the reactive species in optimizing the catalytic activity of Ni-based catalysts. Thermodynamic and stability optimizations of nickel-based catalysts are thoroughly examined, focusing on alloying strategies, heteroatom incorporation, and the use of various support materials to enhance their catalytic performance and durability. The review also addresses the challenge of catalyst poisoning, particularly by carbon monoxide, and evaluates the effectiveness of different approaches to improve poison resistance. Finally, the review concludes by summarizing the key findings and proposing future research directions to further enhance the efficiency and stability of nickel-based catalysts for practical applications in anion exchange membrane fuel cells. The insights gained from this comprehensive analysis aim to contribute to the development of cost-effective and sustainable catalysts and facilitate the broader adoption of AEMFCs in the quest for clean energy solutions.

摘要

本综述聚焦于碱性介质中用于氢氧化反应的镍基催化剂在开发与认识方面的最新进展。鉴于与铂族金属相关的经济和环境限制,镍基催化剂因其储量丰富、成本较低且具有可比的催化性能而成为有前景的替代物。综述首先探讨了氢氧化反应的基本机理,强调了活性物种在优化镍基催化剂催化活性中的关键作用。对镍基催化剂的热力学和稳定性优化进行了全面研究,重点关注合金化策略、杂原子掺入以及使用各种载体材料来提高其催化性能和耐久性。综述还讨论了催化剂中毒的挑战,特别是一氧化碳导致的中毒,并评估了不同提高抗中毒能力方法的有效性。最后,综述通过总结关键发现并提出未来研究方向来得出结论,以进一步提高镍基催化剂在阴离子交换膜燃料电池实际应用中的效率和稳定性。从这一全面分析中获得的见解旨在为开发具有成本效益和可持续性的催化剂做出贡献,并促进阴离子交换膜燃料电池在寻求清洁能源解决方案中的更广泛应用。

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