MOF-derived Co-MOF,O-doped carbon as trifunctional electrocatalysts to enable highly efficient Zn–air batteries and water-splitting

被引:12
|
作者
Xinde Duan [1 ,2 ]
Na Pan [1 ]
Can Sun [1 ]
Kexin Zhang [1 ]
Xukun Zhu [1 ]
Mingdao Zhang [1 ]
Li Song [1 ]
Hegen Zheng [2 ]
机构
[1] School of Environmental Science and Engineering, Nanjing University of Information Science & Technology, Jiangsu Key Laboratory of Atmospheric Environment Monitoring and Pollution Control, Collaborative Innovation Center of Atmospheric Environment and Equi
[2] State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Collaborative Innovation Center of Advanced Microstructures, Nanjing University
关键词
D O I
暂无
中图分类号
TM911.4 [燃料电池]; TQ116.2 [氢气]; TQ426 [催化剂(触媒)];
学科分类号
080502 ; 0808 ; 0817 ; 081705 ;
摘要
Development of high-efficiency non-noble electrocatalysts for oxygen reduction reaction(ORR), oxygen evolution reaction(OER) and hydrogen evolution reaction(HER) is urgently needed for high-performance Zn–air batteries and overall water splitting. Here, a facile strategy to synthesize novel Co-MOF,O-doped carbon(Co-MOF-T) based on Zn, Co-doped glucosamine and ZIF-8 by pyrolysis at temperature T was demonstrated. The prepared Co-MOF-800 showed a superior oxygen reduction reaction(ORR) activity comparable to that of commercial Pt/C catalyst. In addition, this catalyst shows great potential in the overall water splitting due to the excellent oxygen evolution reaction(OER) and hydrogen evolution reaction(HER) activities. Based on the trifunctional activity, the primary Zn–air batteries using a Co-MOF-800 air electrode achieved a high open-circuit voltage of 1.38 V, a specific capacity of 671.6 mAh g–1 Zn, and a prominent peak power density of 144 mW cmà2. Also, the rechargeable Zn–air batteries based on CoMOF-800 air electrode could be smoothly run for 510 cycles with a low voltage gap of 0.58 V. Finally,the trifunctional Co-MOF-800 catalyst was applied to boost the electrochemical water splitting, demonstrating its promising potential as a green energy material for practical applications.
引用
收藏
页码:290 / 298
页数:9
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