上海大学学报(自然科学版) ›› 2023, Vol. 29 ›› Issue (5): 886-899.doi: 10.12066/j.issn.1007-2861.2536

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电催化尿素氧化反应催化剂设计的研究进展 

郑丝雨, 曹雪洁, 焦丽芳   

  1. 南开大学 化学学院 先进能源材料化学教育部重点实验室, 天津 300074
  • 收稿日期:2023-04-25 出版日期:2023-10-28 发布日期:2023-11-03
  • 通讯作者: 焦丽芳 (1976—), 女, 教授, 博士, 研究方向为新能源材料、二次电池、纳米电催化. E-mail:jiaolf@nankai.edu.cn
  • 基金资助:
    国家自然科学基金资助项目 (52025013) 

Research progress in the design of electrocatalytic urea oxidation reaction catalysts

ZHENG Siyu, CAO Xuejie, JIAO Lifang   

  1. Key Laboratory of Advanced Energy Materials Chemistry, Ministry of Education, College of Chemistry, Nankai University, Tianjin 300074, China
  • Received:2023-04-25 Online:2023-10-28 Published:2023-11-03

摘要:

电催化尿素氧化反应 (urea oxidation reaction, UOR) 是尿素辅助电解水制氢、含尿素废水电化学降解和直接尿素燃料电池的基础反应. 然而, 由于 UOR 存在六电子转移过程,动力学缓慢, 阻碍了这些技术的实际应用, 急需寻找高效且低成本的电催化剂以促进 UOR 的 反应进程. 基于此, 近几年已报道了多种合成策略, 并且在催化剂设计和机理研究方面取得了巨大进展. 首先, 讨论 UOR 辅助电解水的反应过程, 并对应用于催化剂设计的掺杂工程、异质结构建、缺陷工程、合金和关键反应中间体的调控等多种策略展开论述. 最后, 对 UOR 催化剂的研究进展进行总结, 并讨论了基于尿素的能源转化技术和相应催化剂未来发展所面临的挑战和前景. 

关键词: 尿素氧化反应, 电催化剂, 调控策略 

Abstract: Electrocatalytic urea oxidation reaction (UOR) is the basic reaction involved in urea-assisted hydrogen production from electrolytic water, hydro-chemical degradation of urea-containing waste water, and direct urea fuel cell. However, because UOR involves a six-electron transfer process, it has slow kinetics, and thus has limited practical applications. Efficient and low-cost electrocatalysts must be developed to promote the UOR reaction process. To this end, many synthesis strategies have been reported in recent years, and great progress has been made in terms of catalyst design and elucidation of mechanism. In this paper, we discussed the details of UOR, along with various control game theories, such as doping engineering, heterostructure construction, defect engineering, alloys, and key reaction intermediates. We also summarized the research progress on UOR catalysts and discussed the challenges and prospects associated with the future development of ureabased energy conversion technology and the corresponding catalysts. 

Key words:  urea oxidation reaction, electrocatalyst, regulation strategy 

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