Chen Huatian, Chen Runxuan, Liu Sha, Zhou Yanhong, Chen Xinyu, Cai Jiajin, Lan Xiyue, Jiang Haomin, Lin Liu, Sun Zemin
Center for Advanced Materials Research & College of Arts and Sciences, Beijing Normal University, Zhuhai, 519087, China.
Beijing Key Laboratory of Energy Conversion and Storage Materials Institution, College of Chemistry, Beijing Normal University, Beijing, 100091, China.
Chempluschem. 2024 Nov;89(11):e202400422. doi: 10.1002/cplu.202400422. Epub 2024 Sep 9.
The two-electron oxygen reduction reaction (2e-ORR) for the sustainable synthesis of hydrogen peroxide (HO) has demonstrated considerable potential for local production of this environmentally friendly chemical oxidant on small, medium, and large scales. This method offers a promising alternative to the energy-intensive anthraquinone approach, placing a primary emphasis on the development of efficient electrocatalysts. Improving the efficiency of electrocatalysts and uncovering their catalytic mechanisms are essential steps in achieving high 2e-ORR activity, selectivity, and stability. This comprehensive review summarizes recent advancements in electrocatalysts for in-situ HO production, providing a detailed overview of the field. In particular, the review delves into the design, fabrication, and investigation of catalytic active sites contributing to HO selectivity. Additionally, it highlights a range of electrocatalysts including pure metals and alloys, transition metal compounds, single-atom catalysts, and carbon-based catalysts for the 2e-ORR pathway. Finally, the review addresses significant challenges and opportunities for efficient HO electrosynthesis, as well as potential future research directions.
用于可持续合成过氧化氢(H₂O₂)的双电子氧还原反应(2e-ORR)已展现出在小、中、大规模上本地生产这种环境友好型化学氧化剂的巨大潜力。该方法为能源密集型蒽醌法提供了一种有前景的替代方案,主要侧重于高效电催化剂的开发。提高电催化剂的效率并揭示其催化机制是实现高2e-ORR活性、选择性和稳定性的关键步骤。这篇综述总结了用于原位生产H₂O₂的电催化剂的最新进展,对该领域进行了详细概述。特别是,该综述深入探讨了有助于H₂O₂选择性的催化活性位点的设计、制备和研究。此外,它还重点介绍了一系列用于2e-ORR途径的电催化剂,包括纯金属和合金、过渡金属化合物、单原子催化剂以及碳基催化剂。最后,该综述阐述了高效H₂O₂电合成面临的重大挑战和机遇,以及潜在的未来研究方向。