State Key Laboratory of Chemical Resource Engineering, Beijing Engineering Center for Hierarchical Catalysts, Beijing University of Chemical Technology, No. 15 Beisanhuan East Road, Chaoyang district, Beijing, 100029, China.
Chem Rec. 2018 Jul;18(7-8):840-848. doi: 10.1002/tcr.201700081. Epub 2017 Dec 29.
Oxygen reduction reaction (ORR) is the crucial step of various renewable energy conversion and storage technologies such as fuel cells and air-batteries. Cobalt-based electrocatalysts including oxides/chalcogenides and Co-N /C, one kind of non-precious metal electrocatalysts with competitive activity, enhanced durability, and acceptable cost, have been proposed as the potentially interesting alternatives to Pt-based electrocatalysts. In this account, we summarized the synthesis methods and the corresponding main impact factors including ligand effect, particle size effect, crystal structure, nanostructure, defects and active centers related to the ORR performance on both of oxides/chalcogenides and Co-N /C. Some special points have been discussed on design and synthesis of low-cost and high-performance cobalt-based electrocatalysts with enhanced electrocatalytic activity. Also, the current challenges and future trends are proposed for improving the performance of Co-involving electrocatalysts.
氧还原反应(ORR)是各种可再生能源转换和存储技术(如燃料电池和空气电池)的关键步骤。钴基电催化剂包括氧化物/硫属化物和 Co-N/C,作为一种具有竞争力的活性、增强的耐久性和可接受成本的非贵金属电催化剂,已被提议作为 Pt 基电催化剂的潜在替代品。在本报告中,我们总结了合成方法以及相应的主要影响因素,包括配体效应、颗粒尺寸效应、晶体结构、纳米结构、与 ORR 性能相关的缺陷和活性中心,这两个方面都涉及到了氧化物/硫属化物和 Co-N/C。还讨论了设计和合成具有增强电催化活性的低成本、高性能钴基电催化剂的一些特殊要点。此外,还提出了提高含钴电催化剂性能的当前挑战和未来趋势。