Optimizing electronic synergy of atomically dispersed dual-metal Ni-N4 and Fe-N4 sites with adjacent Fe nanoclusters for high-efficiency oxygen electrocatalysis

被引:85
作者
Meng, Haibing [1 ]
Wu, Bin [2 ]
Zhang, Dantong [3 ]
Zhu, Xuhai [4 ]
Luo, Songzhu [5 ]
You, Ya [6 ]
Chen, Kai [7 ]
Long, Juncai [6 ]
Zhu, Jiexin [6 ]
Liu, Liping [8 ]
Xi, Shibo [9 ]
Petit, Tristan [2 ]
Wang, Dingsheng [8 ]
Zhang, Xian-Ming [1 ]
Xu, Zhichuan J. [5 ]
Mai, Liqiang [6 ]
机构
[1] Taiyuan Univ Technol, Coll Chem, Taiyuan 030024, Peoples R China
[2] Helmholtz Zentrum Berlin Materialien & Energie Gmb, Albert Einstein Str 15, D-12489 Berlin, Germany
[3] Qiqihar Univ, Coll Chem & Chem Engn, Qiqihar 161006, Peoples R China
[4] Chinese Acad Sci, Dalian Inst Chem Phys, State Key Lab Catalysis, Dalian 110623, Liaoning, Peoples R China
[5] Nanyang Technol Univ, Sch Mat Sci & Engn, 50 Nanyang Ave, Singapore 639798, Singapore
[6] Wuhan Univ Technol, Sch Mat Sci & Engn, State Key Lab Adv Technol Mat Synth & Proc, Wuhan 430070, Peoples R China
[7] Univ Sci & Technol China, Natl Synchrotron Radiat Lab, Hefei 230026, Peoples R China
[8] Tsinghua Univ, Dept Chem, Beijing 100084, Peoples R China
[9] Agcy Sci Technol & Res, Inst Chem & Engn Sci, Singapore 627833, Singapore
基金
中国博士后科学基金;
关键词
BIFUNCTIONAL ELECTROCATALYSTS; AIR BATTERIES; NICKEL; IRON; CATALYSTS; PERFORMANCE; DIFFUSION; COBALT; FILMS;
D O I
10.1039/d3ee03383j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Single-atom catalysts with M-N-4 configurations have been highly investigated due to their great potential in oxygen electrocatalysis. However, their practical applications in Zn-air batteries are still impeded by the unsatisfied activity and durability. Herein, we develop a dual-metal single-atomic NiFe-N-C catalyst containing Fe nanoclusters by simply pyrolyzing metal phthalocyanine and N-doped carbon precursors. A series of in situ spectroscopic characterizations and density functional theory calculations provide compelling evidence of the co-existence and electronic synergy of Ni-N-4 and Fe-N-4 coordination structures as well as adjacent coupled Fe nanoclusters, which regulate the electronic structure of catalytic active sites and optimize their adsorption/desorption of oxygenated intermediates, accelerating the reaction kinetics and reducing the energy barrier of the oxygen electrocatalysis. As a result, NiFe-N-C exhibits competitive oxygen evolution/reduction reaction (OER/ORR) activity and durability with an ultrasmall Delta E of 0.68 V and a negligible decay of E-1/2 and E-j10 after 50 000 and 90 000 potential cycles, respectively. In addition, Zn-air batteries based on a NiFe-N-C electrocatalyst with a high power density, high specific discharge capacity and ultralong lifespans are realized. This work provides an effective strategy for synergistic electronic modulation of atomically dispersed metal sites, paving a new way for designing advanced bifunctional oxygen electrocatalysts and beyond.
引用
收藏
页码:704 / 716
页数:13
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