Selective two-electron and four-electron oxygen reduction reactions using Co-based electrocatalysts

IF 40.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Zuozhong Liang, Haitao Lei, Haoquan Zheng, Hong-Yan Wang, Wei Zhang, Rui Cao
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Abstract

The oxygen reduction reaction (ORR) can take place via both four-electron (4e) and two-electron (2e) pathways. The 4e ORR, which produces water (H2O) as the only product, is the key reaction at the cathode of fuel cells and metal–air batteries. On the other hand, the 2e ORR can be used to electrocatalytically synthesize hydrogen peroxide (H2O2). For the practical applications of the ORR, it is very important to precisely control the selectivity. Understanding structural effects on the ORR provides the basis to control the selectivity. Co-based electrocatalysts have been extensively studied for the ORR due to their high activity, low cost, and relative ease of synthesis. More importantly, by appropriately designing their structures, Co-based electrocatalysts can become highly selective for either the 2e or the 4e ORR. Therefore, Co-based electrocatalysts are ideal models for studying fundamental structure–selectivity relationships of the ORR. This review starts by introducing the reaction mechanism and selectivity evaluation of the ORR. Next, Co-based electrocatalysts, especially Co porphyrins, used for the ORR with both 2e and 4e selectivity are summarized and discussed, which leads to the conclusion of several key structural factors for ORR selectivity regulation. On the basis of this understanding, future works on the use of Co-based electrocatalysts for the ORR are suggested. This review is valuable for the rational design of molecular catalysts and material catalysts with high selectivity for 4e and 2e ORRs. The structural regulation of Co-based electrocatalysts also provides insights into the design and development of ORR electrocatalysts based on other metal elements.

Abstract Image

钴基电催化剂的选择性二电子和四电子氧还原反应
氧还原反应(ORR)可以通过四电子(4e−)和两电子(2e−)途径进行。4e−ORR反应的唯一产物是水(H2O),是燃料电池和金属-空气电池阴极的关键反应。另一方面,2e−ORR可用于电催化合成过氧化氢(H2O2)。对于ORR的实际应用,精确控制其选择性是非常重要的。了解结构对ORR的影响为控制选择性提供了基础。钴基电催化剂因其高活性、低成本和相对容易合成而得到广泛的研究。更重要的是,通过适当的结构设计,co基电催化剂可以对2e -或4e - ORR具有高选择性。因此,钴基电催化剂是研究ORR基本结构-选择性关系的理想模型。本文首先介绍了ORR的反应机理和选择性评价。其次,总结和讨论了用于具有2e -和4e -选择性的ORR的Co基电催化剂,特别是Co卟啉,并得出了影响ORR选择性调节的几个关键结构因素。在此基础上,展望了co基电催化剂在ORR中的应用前景。这对合理设计高选择性的4e -和2e - orr分子催化剂和材料催化剂具有一定的参考价值。co基电催化剂的结构规律也为基于其他金属元素的ORR电催化剂的设计和开发提供了启示。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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