Enhanced dual atomic Fe-Ni sites in N-doped carbon for bifunctional oxygen electrocatalysis

被引:20
作者
Yan, Jin [1 ]
Tian, Meng [1 ]
Shi, Ruhua [1 ]
Gu, Tianyi [1 ]
Zeng, Kai [1 ]
Zhou, Junhua [1 ]
Zhang, Qian [1 ]
Ruemmeli, Mark H. [1 ,2 ,3 ]
Yang, Ruizhi [1 ]
机构
[1] Soochow Univ, Soochow Inst Energy & Mat Innovat, Coll Energy, Suzhou 215006, Peoples R China
[2] Polish Acad Sci, Ctr Polymer & Carbon Mat, M Curie Sklodowskiej 34, PL-41819 Zabrze, Poland
[3] Tech Univ Ostrava, Inst Environm Technol, VSB, 17 Listopadu 15, Ostrava 70833, Czech Republic
基金
国家重点研发计划;
关键词
Catalysts; Dual-atomic Fe-Nix; Mechanochemical; Oxygen reduction reaction; Zn-air battery; COORDINATION ENVIRONMENT; REDUCTION; CATALYSTS; EFFICIENCY;
D O I
10.1016/j.mtener.2022.101171
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Atomically dispersed catalysts with high electrocatalytic performance are emerging as promising elec-trocatalysts for energy conversion and storage devices. Nevertheless, achieving superior bifunctional catalytic activity with single-atom catalysts toward reactions involving multi-intermediates is still facing great challenges. Herein, dual-atomic Fe-Ni pairs dispersed in hierarchical porous nitrogen-doped carbon (FeNi-HPNC) catalysts were successfully synthesized using a facile mechanochemical strategy. By virtue of the engineered electronic structure of Fe coordinated with Ni, the as-synthesized FeNi-HPNC with atomically dispersed dual-metal active sites and pore-rich structure exhibits remarkable bifunctional activities. A high half-wave potential of 0.868 V for oxygen reduction reaction and a low potential of 1.59 V at 10 mA/cm2 for oxygen evolution reaction have been obtained for FeNi-HPNC, which are superior to the single-atom catalysts of Fe-HPNC and Ni-HPNC, respectively, and are even greater than the precious metal catalysts. Combined experimental and theoretical results have revealed that the enhanced bifunctional catalytic activity of FeNi-HPNC is ascribed to the electronic interaction of Fe-Ni sites, which decreases the adsorption energy of oxygen intermediates during oxygen reduction reac-tion/oxygen evolution reaction. Furthermore, the practical application of FeNi-HPNC catalysts in Zn-air batteries has been demonstrated; a high peak power density and long-term durability are delivered.(c) 2022 Elsevier Ltd. All rights reserved.
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页数:10
相关论文
共 52 条
  • [1] Markedly Enhanced Oxygen Reduction Activity of Single-Atom Fe Catalysts via Integration with Fe Nanoclusters
    Ao, Xiang
    Zhang, Wei
    Li, Zhishan
    Li, Jian-Gang
    Soule, Luke
    Huang, Xing
    Chiang, Wei-Hung
    Chen, Hao Ming
    Wang, Chundong
    Liu, Meilin
    Zeng, Xiao Cheng
    [J]. ACS NANO, 2019, 13 (10) : 11853 - 11862
  • [2] MnCo2O4 Anchored on P-Doped Hierarchical Porous Carbon as an Electrocatalyst for High-Performance Rechargeable Li-O2 Batteries
    Cao, Xuecheng
    Wu, Jiao
    Jin, Chao
    Tian, Jinghua
    Strasser, Peter
    Yang, Ruizhi
    [J]. ACS CATALYSIS, 2015, 5 (08): : 4890 - 4896
  • [3] Dual Single-Atomic Ni-N4and Fe-N4Sites Constructing Janus Hollow Graphene for Selective Oxygen Electrocatalysis
    Chen, Jiangyue
    Li, Hao
    Fan, Chuang
    Meng, Qingwei
    Tang, Yawen
    Qiu, Xiaoyu
    Fu, Gengtao
    Ma, Tianyi
    [J]. ADVANCED MATERIALS, 2020, 32 (30)
  • [4] Unraveling the Origin of Sulfur-Doped Fe-N-C Single-Atom Catalyst for Enhanced Oxygen Reduction Activity: Effect of Iron Spin-State Tuning
    Chen, Zhaoyang
    Niu, Huan
    Ding, Jie
    Liu, Heng
    Chen, Pei-Hsuan
    Lu, Yi-Hsuan
    Lu, Ying-Rui
    Zuo, Wenbin
    Han, Lei
    Guo, Yuzheng
    Hung, Sung-Fu
    Zhai, Yueming
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (48) : 25404 - 25410
  • [5] Atomically Dispersed Transition Metal-Nitrogen-Carbon Bifunctional Oxygen Electrocatalysts for Zinc-Air Batteries: Recent Advances and Future Perspectives
    Dong, Fang
    Wu, Mingjie
    Chen, Zhangsen
    Liu, Xianhu
    Zhang, Gaixia
    Qiao, Jinli
    Sun, Shuhui
    [J]. NANO-MICRO LETTERS, 2022, 14 (01)
  • [6] How Cobalt and Iron Doping Determine the Oxygen Evolution Electrocatalytic Activity of NiOOH
    Dou, Yuhai
    He, Chun-Ting
    Zhang, Lei
    Al-Mamun, Mohammad
    Guo, Haipeng
    Zhang, Wenchao
    Xia, Qingbing
    Xu, Jiantie
    Jiang, Lixue
    Wang, Yun
    Liu, Porun
    Chen, Xiao-Ming
    Yin, Huajie
    Zhao, Huijun
    [J]. CELL REPORTS PHYSICAL SCIENCE, 2020, 1 (06):
  • [7] General synthesis and definitive structural identification of MN4C4 single-atom catalysts with tunable electrocatalytic activities
    Fei, Huilong
    Dong, Juncai
    Feng, Yexin
    Allen, Christopher S.
    Wan, Chengzhang
    Volosskiy, Boris
    Li, Mufan
    Zhao, Zipeng
    Wang, Yiliu
    Sun, Hongtao
    An, Pengfei
    Chen, Wenxing
    Guo, Zhiying
    Lee, Chain
    Chen, Dongliang
    Shakir, Imran
    Liu, Mingjie
    Hu, Tiandou
    Li, Yadong
    Kirkland, Angus I.
    Duan, Xiangfeng
    Huang, Yu
    [J]. NATURE CATALYSIS, 2018, 1 (01): : 63 - 72
  • [8] Atomically Dispersed Binary Co-Ni Sites in Nitrogen-Doped Hollow Carbon Nanocubes for Reversible Oxygen Reduction and Evolution
    Han, Xiaopeng
    Ling, Xiaofei
    Yu, Deshuang
    Xie, Dengyu
    Li, Linlin
    Peng, Shengjie
    Zhong, Cheng
    Zhao, Naiqin
    Deng, Yida
    Hu, Wenbin
    [J]. ADVANCED MATERIALS, 2019, 31 (49)
  • [9] INHOMOGENEOUS ELECTRON-GAS
    RAJAGOPAL, AK
    CALLAWAY, J
    [J]. PHYSICAL REVIEW B, 1973, 7 (05) : 1912 - 1919
  • [10] Atomic Modulation and Structure Design of Carbons for Bifunctional Electrocatalysis in Metal-Air Batteries
    Huang, Yiyin
    Wang, Yueqing
    Tang, Cheng
    Wang, Jun
    Zhang, Qiang
    Wang, Yaobing
    Zhang, Jintao
    [J]. ADVANCED MATERIALS, 2019, 31 (13)