Hierarchical mesoporous S,N-codoped carbon nanostructures composed of Co/Co-Cu-S/carbon nanoplate arrays on carbon nanofibers as a self-supported air cathode for long-lasting rechargeable Zn-air batteries

被引:0
|
作者
ZhuYing Xu
Lei Yan
JunLing Shen
XiaoJing Yang
JiQiang Ning
YiJun Zhong
Yong Hu
机构
[1] Zhejiang Normal University,Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Department of Chemistry
[2] Fudan University,Department of Optical Science and Engineering
[3] Zhejiang Normal University,Hangzhou Institute of Advanced Studies
来源
Science China Technological Sciences | 2022年 / 65卷
关键词
Co; Co-Cu-S; carbon; bifunctional electrocatalyst; rechargeable Zn-air batteries;
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中图分类号
学科分类号
摘要
One of the primary roadblocks to widespread applications of rechargeable Zn-air batteries is the durability issue with oxygen reduction and evolution processes (ORR/OER) bifunctional electrocatalysts. We herein report the construction of a self-supported air cathode for Zn-air batteries made of S,N-codoped porous complex carbon nanostructures of Co/Co-Cu-S/carbon nanoplate arrays and carbon nanofibers (denoted as Co/Co-Cu-S@SNPCP-CFs). The hierarchical heteroatom-doped mesoporous carbon nanohybrids with multiple active species not only provide a high surface-to-volume ratio, exposing more catalytic sites and accelerating the charge and mass transfer, but also boost the activity and durability. The Co/Co-Cu-S@SNPCP-CFs catalyst reveals a small potential gap (ΔE=0.67 V) between the half-wave potential of ORR and OER potential at 10 mA cm−2, demonstrating outstanding bifunctional performance. Furthermore, the rechargeable Zn-air battery made with the as-obtained electrocatalyst exhibits a high-power density of 220 mW cm−2 and a long cycling time of over 800 h at 10 mA cm−2, and the flexible solid state rechargeable Zn-air battery based on Co/Co-Cu-S@SNPCP-CFs self-supporting air cathode also displays a long duration time of over 60 h.
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页码:693 / 703
页数:10
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