Woo Jinwoo, Lim June Sung, Kim Jae Hyung, Joo Sang Hoon
School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulsan 44919, Republic of Korea.
Chem Commun (Camb). 2021 Jul 27;57(60):7350-7361. doi: 10.1039/d1cc02667d.
Oxygen reduction reaction (ORR) plays a pivotal role in electrochemical energy conversion and commodity chemical production. Oxygen reduction involving a complete four-electron (4e-) transfer is important for the efficient operation of polymer electrolyte fuel cells, whereas the ORR with a partial 2e- transfer can serve as a versatile method for producing industrially important hydrogen peroxide (H2O2). For both the 4e- and 2e- pathway ORR, platinum-group metals (PGMs) have been materials of prevalent choice owing to their high intrinsic activity, but they are costly and scarce. Hence, the development of highly active and selective non-precious metal catalysts is of crucial importance for advancing electrocatalysis of the ORR. Heteroatom-doped carbon-based electrocatalysts have emerged as promising alternatives to PGM catalysts owing to their appreciable activity, tunable selectivity, and facile preparation. This review provides an overview of the design of heteroatom-doped carbon ORR catalysts with tailored 4e- or 2e- selectivities. We highlight catalyst design strategies that promote 4e- or 2e- ORR activity. We also summarise the major active sites and activity descriptors of the respective ORR pathways and describe the catalyst properties controlling the ORR mechanisms. We conclude the review with a summary and suggestions for future research.
氧还原反应(ORR)在电化学能量转换和大宗商品化学品生产中起着关键作用。涉及完整四电子(4e-)转移的氧还原对于聚合物电解质燃料电池的高效运行至关重要,而部分两电子(2e-)转移的ORR可作为生产具有工业重要性的过氧化氢(H2O2)的通用方法。对于4e-和2e-途径的ORR,铂族金属(PGMs)因其高本征活性而一直是普遍选择的材料,但它们成本高昂且稀缺。因此,开发高活性和选择性的非贵金属催化剂对于推进ORR的电催化至关重要。杂原子掺杂的碳基电催化剂因其可观的活性、可调的选择性和简便的制备方法而成为PGM催化剂有前景的替代品。本文综述概述了具有定制4e-或2e-选择性的杂原子掺杂碳ORR催化剂的设计。我们强调了促进4e-或2e-ORR活性的催化剂设计策略。我们还总结了各自ORR途径的主要活性位点和活性描述符,并描述了控制ORR机制的催化剂性质。我们以总结和对未来研究的建议结束本文综述。