Hetero‐Diatomic CoN4‐NiN4 Site Pairs with Long‐Range Coupling as Efficient Bifunctional Catalyst for Rechargeable Zn–Air Batteries

Author:

Yang Yue1,Li Bin2,Liang Yining1,Ni Wenpeng3,Li Xuan1,Shen Gengzhe1,Xu Lin1,Chen Zhengjian1ORCID,Zhu Chun2,Liang Jin‐Xia2,Zhang Shiguo3

Affiliation:

1. Zhuhai Institute of Advanced Technology, Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences Zhuhai 519000 China

2. School of Chemistry and Chemical Engineering Guizhou University Guiyang 550025 China

3. College of Materials Science and Engineering, State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body Hunan University Changsha 410004 China

Abstract

AbstractIn this study, Co/Ni‐NC catalyst with hetero‐diatomic Co/Ni active sites dispersed on nitrogen‐doped carbon matrix is synthesized via the controlled pyrolysis of ZIF‐8 containing Co2+ and Ni2+ compounds. Experimental characterizations and theoretical calculations reveal that Co and Ni are atomically and uniformly dispersed in pairs of CoN4‐NiN4 with an intersite distance ≈0.41 nm, and there is long‐range dd coupling between Co and Ni with more electron delocalization for higher bifunctional activity. Besides, the in situ grown carbon nanotubes at the edges of the catalyst particles allow high electronic conductivity for electrocatalysis process. Electrochemical evaluations demonstrate the superior ORR and OER bifunctionality of Co/Ni‐NC catalyst with a narrow potential gap of only 0.691 V and long‐term durability, significantly prevailing over the single‐atom Co‐NC and Ni‐NC catalysts and the benchmark Pt/C and RuO2 catalysts. Co/Ni‐NC catalyzed Zn–air batteries achieve a high specific capacity of 771 mAh g−1 and a long continuous operation period up to 340 h with a small voltage gap of ≈0.65 V, also much superior to Pt/C‐RuO2.

Publisher

Wiley

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