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缺陷与掺杂协同设计的非金属纳米碳氧还原反应电催化剂

Defect and Doping Co-Engineered Non-Metal Nanocarbon ORR Electrocatalyst.

作者信息

Zhang Jian, Zhang Jingjing, He Feng, Chen Yijun, Zhu Jiawei, Wang Deli, Mu Shichun, Yang Hui Ying

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan, 430074, People's Republic of China.

Pillar of Engineering Product Development, Singapore University of Technology and Design, 8 Somapah Road, Singapore, 487372, Singapore.

出版信息

Nanomicro Lett. 2021 Feb 6;13(1):65. doi: 10.1007/s40820-020-00579-y.

Abstract

Exploring low-cost and earth-abundant oxygen reduction reaction (ORR) electrocatalyst is essential for fuel cells and metal-air batteries. Among them, non-metal nanocarbon with multiple advantages of low cost, abundance, high conductivity, good durability, and competitive activity has attracted intense interest in recent years. The enhanced ORR activities of the nanocarbons are normally thought to originate from heteroatom (e.g., N, B, P, or S) doping or various induced defects. However, in practice, carbon-based materials usually contain both dopants and defects. In this regard, in terms of the co-engineering of heteroatom doping and defect inducing, we present an overview of recent advances in developing non-metal carbon-based electrocatalysts for the ORR. The characteristics, ORR performance, and the related mechanism of these functionalized nanocarbons by heteroatom doping, defect inducing, and in particular their synergistic promotion effect are emphatically analyzed and discussed. Finally, the current issues and perspectives in developing carbon-based electrocatalysts from both of heteroatom doping and defect engineering are proposed. This review will be beneficial for the rational design and manufacturing of highly efficient carbon-based materials for electrocatalysis.

摘要

探索低成本且储量丰富的氧还原反应(ORR)电催化剂对于燃料电池和金属空气电池至关重要。其中,具有低成本、储量丰富、高导电性、良好耐久性和具有竞争力活性等多重优势的非金属纳米碳近年来引起了广泛关注。通常认为,纳米碳增强的ORR活性源自杂原子(如N、B、P或S)掺杂或各种诱导缺陷。然而,在实际中,碳基材料通常同时含有掺杂剂和缺陷。在此方面,就杂原子掺杂和缺陷诱导的协同工程而言,我们概述了开发用于ORR的非金属碳基电催化剂的最新进展。着重分析和讨论了这些通过杂原子掺杂、缺陷诱导功能化的纳米碳的特性、ORR性能及其相关机理,特别是它们的协同促进作用。最后,提出了从杂原子掺杂和缺陷工程两方面开发碳基电催化剂当前存在的问题及展望。本综述将有助于合理设计和制造用于电催化的高效碳基材料。

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