Recent Advances in ZIF-Derived Atomic Metal-N-C Electrocatalysts for Oxygen Reduction Reaction: Synthetic Strategies, Active Centers, and Stabilities

被引:104
作者
Gao, Chen [1 ]
Mu, Shengdong [1 ]
Yan, Rui [1 ]
Chen, Fan [1 ]
Ma, Tian [2 ]
Cao, Sujiao [2 ]
Li, Shuang [1 ,3 ]
Ma, Lang [2 ,4 ]
Wang, Yinghan [1 ]
Cheng, Chong [1 ]
机构
[1] Sichuan Univ, State Key Lab Polymer Mat Engn, Coll Polymer Sci & Engn, Chengdu 610065, Peoples R China
[2] Sichuan Univ, West China Hosp, Dept Ultrasound, Chengdu 610041, Peoples R China
[3] Tech Univ Berlin, Dept Chem, Funct Mat, Hardenbergstr 40, D-10623 Berlin, Germany
[4] Sichuan Univ, Natl Clin Res Ctr Geriatr, Chengdu 610041, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
catalytic activity and stability; electrocatalytic nanostructures; metal-N-C electrocatalysts; oxygen reduction reaction; zeolitic imidazolate frameworks; NITROGEN-CARBON CATALYSTS; REDUCED GRAPHENE OXIDE; POROUS CARBON; EFFICIENT ELECTROCATALYSTS; GRAPHITIC LAYERS; FE/N/C CATALYSTS; O-2; REDUCTION; ACIDIC MEDIA; FE; SITES;
D O I
10.1002/smll.202105409
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Exploring highly active, stable electrocatalysts with earth-abundant metal centers for the oxygen reduction reaction (ORR) is essential for sustainable energy conversion. Due to the high cost and scarcity of platinum, it is a general trend to develop metal-N-C (M-N-C) electrocatalysts, especially those prepared from the zeolite imidazolate framework (ZIF) to replace/minimize usage of noble metals in ORR electrocatalysis for their amazingly high catalytic efficiency, great stability, and readily-tuned electronic structure. In this review, the most pivotal advances in mechanisms leading to declined catalytic performance, synthetic strategies, and design principles in engineering ZIF-derived M-N-C for efficient ORR catalysis, are presented. Notably, this review focuses on how to improve intrinsic ORR activity, such as M-N-x-C-y coordination structures, doping metal-free heteroatoms in M-N-C, dual/multi-metal sites, hydrogen passivation, and edge-hosted M-N-x. Meanwhile, how to increase active sites density, including formation of M-N complex, spatial confinement effects, and porous structure design, are discussed. Thereafter, challenges and future perspectives of M-N-C are also proposed. The authors believe this instructive review will provide experimental and theoretical guidance for designing future, highly active ORR electrocatalysts, and facilitate their applications in diverse ORR-related energy technologies.
引用
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页数:23
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