Vacancies and interfaces engineering of core-shell heterostuctured NiCoP/NiO as trifunctional electrocatalysts for overall water splitting and zinc-air batteries

被引:0
|
作者
Xiaolin Hu [1 ]
Jichuan Fan [2 ]
Ronghua Wang [2 ]
Meng Li [3 ]
Shikuan Sun [4 ]
Chaohe Xu [1 ,5 ]
Fusheng Pan [2 ,5 ]
机构
[1] College of Aerospace Engineering, Chongqing University
[2] College of Materials Science and Engineering, Chongqing University
[3] MOE Key Laboratory of Low-grade Energy Utilization Technologies and Systems, CQU-NUS Renewable Energy Materials & Devices Joint Laboratory, School of Energy & Power Engineering, Chongqing University
[4] School of Materials Science and Energy Engineering, Foshan University
[5] National Engineering Research Center for Magnesium Alloys, Chongqing University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TM911.41 [金属-空气电池];
学科分类号
0808 ;
摘要
The electronic structures and properties of electrocatalysts,which depend on the physicochemical structure and metallic element components,could significantly affect their electrocatalytic performance and their future applications in Zn-air battery(ZAB) and overall water splitting(OWS).Here,by combining vacancies and heterogeneous interfacial engineering,three-dimensional(3D) core-shell NiCoP/NiO heterostructures with dominated oxygen vacancies have been controllably in-situ grown on carbon cloth for using as highly efficient electrocatalysts toward hydrogen and oxygen electrochemical reactions.Theoretical calculation and electrochemical results manifest that the hybridization of NiCoP core with NiO shell produces a strong synergistic electronic coupling effect.The oxygen vacancy can enable the emergence of new electronic states within the band gap,crossing the Fermi levels of the two spin components and optimizing the local electronic structure.Besides,the hierarchical core-shell NiCoP/NiO nanoarrays also endow the catalysts with multiple exposed active sites,faster mass transfer behavior,optimized electronic strutures and improved electrochemical performance during ZAB and OWS applications.
引用
收藏
页码:601 / 611
页数:11
相关论文
共 50 条
  • [21] RETRACTION: Colloidal Cobalt Phosphide Nanocrystals as Trifunctional Electrocatalysts for Overall Water Splitting Powered by a Zinc-Air Battery (Retraction of Vol 30, art no 1705796, 2018)
    Li, Hui
    Li, Qi
    Wen, Peng
    Williams, Trey B. B.
    Adhikari, Shiba
    Dun, Chaochao
    Lu, Chang
    Itanze, Dominque
    Jiang, Lin
    Carroll, David L. L.
    Donati, George L. L.
    Lundin, Pamela M. M.
    Qiu, Yejun
    Geyer, Scott M. M.
    ADVANCED MATERIALS, 2023, 35 (22)
  • [22] Hierarchical tri-functional electrocatalysts derived from bimetallic-imidazolate framework for overall water splitting and rechargeable zinc-air batteries
    Ahn, Sung Hoon
    Manthiram, Arumugam
    JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (14) : 8641 - 8652
  • [23] Hollow Nanocages of NixCo1-xSe for Efficient Zinc-Air Batteries and Overall Water Splitting
    Qian, Zhengxin
    Chen, Yinghuan
    Tang, Zhenghua
    Liu, Zhen
    Wang, Xiufang
    Tian, Yong
    Gao, Wei
    NANO-MICRO LETTERS, 2019, 11 (01)
  • [24] 1D/3D Heterogeneous Assembling Body as Trifunctional Electrocatalysts Enabling Zinc-Air Battery and Self-Powered Overall Water Splitting
    Zhou, Guizhong
    Liu, Guishan
    Liu, Xiaobin
    Yu, Qingping
    Mao, Huimin
    Xiao, Zhenyu
    Wang, Lei
    ADVANCED FUNCTIONAL MATERIALS, 2022, 32 (04)
  • [25] Engineering Non-precious Trifunctional Cobalt-Based Electrocatalysts for Industrial Water Splitting and Ultra-High-Temperature Flexible Zinc-Air Battery
    Gu, Tengteng
    Shen, Jiadong
    Sun, Zhaoyu
    Li, Fangkun
    Zhi, Chunyi
    Zhu, Min
    Liu, Jun
    SMALL, 2024, 20 (25)
  • [26] Bimetallic iron-copper-nitrogen macrocyclic/carbon as trifunctional electrocatalysts for Zn-air batteries and overall water splitting
    Chiang, Tzu Hsuan
    Sun, Shih-Che
    Chen, Yu-Si
    JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2020, 115 : 175 - 186
  • [27] Heterointerface engineering of assembled CoP2 on N-modified carbon as efficient trifunctional electrocatalysts for Zn-Air batteries and overall water splitting
    Yan Chen
    Zhenrui Yang
    Juan Wang
    Yun Yang
    Xuedong He
    Yang Wang
    Jiadong Chen
    Yaqing Guo
    Xin Wang
    Shun Wang
    Huile Jin
    Nano Research, 2024, 17 : 3801 - 3809
  • [28] Heterointerface engineering of assembled CoP2 on N-modified carbon as efficient trifunctional electrocatalysts for Zn-Air batteries and overall water splitting
    Chen, Yan
    Yang, Zhenrui
    Wang, Juan
    Yang, Yun
    He, Xuedong
    Wang, Yang
    Chen, Jiadong
    Guo, Yaqing
    Wang, Xin
    Wang, Shun
    Jin, Huile
    NANO RESEARCH, 2024, 17 (05) : 3801 - 3809
  • [29] Foam-like Porous Structured Trimetal Electrocatalysts Exhibiting Superior Performance for Overall Water Splitting and Solid-Liquid Zinc-Air Batteries
    Kumar, Ramasamy Santhosh
    Vijayapradeep, Subramanian
    Sakthivel, Venkitesan
    Sayfiddinov, Dilmurod
    Kim, Ae Rhan
    Yoo, Dong Jin
    ACS APPLIED MATERIALS & INTERFACES, 2025, 17 (07) : 10556 - 10569
  • [30] Self-catalyzed Co, N-doped carbon nanotubes-grafted hollow carbon polyhedrons as efficient trifunctional electrocatalysts for zinc-air batteries and self-powered overall water splitting
    Zhuang, Yongyue
    Cheng, Hao
    Meng, Chunfeng
    Chen, Boyuan
    Zhou, Hu
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2023, 643 : 162 - 173