Metal-organic framework-derived carbon nanotubes with multi-active Fe-N/Fe sites as a bifunctional electrocatalyst for zinc-air battery

被引:7
|
作者
Chao Yang [1 ]
Shanshan Shang [2 ]
Qinfen Gu [3 ]
Jin Shang [2 ]
Xiao-yan Li [1 ,4 ]
机构
[1] Centre for Environmental Engineering Research, Department of Civil Engineering, The University of Hong Kong
[2] Tsinghua-Berkeley Shenzhen Institute, Tsinghua Shenzhen International Graduate School, Tsinghua University
[3] School of Energy and Environment, City University of Hong Kong
[4] Australian Synchrotron, ANSTO
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
O643.36 [催化剂]; TM911.41 [金属-空气电池];
学科分类号
0808 ; 081705 ;
摘要
Sustainable metal-air batteries demand high-efficiency, environmentally-friendly, and non-precious metal-based electrocatalysts with bifunctionality for both the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). In this research, novel functional carbon nanotubes with multi-active sites including well-dispersed single-atom iron throughout the walls and encapsulated ultrafine iron nanoparticles were synthesized as an electrocatalyst (Fe@Fe-N-C) through one-step pyrolysis of metal-organic frameworks. High-resolution synchrotron powder X-ray diffraction and X-ray absorption spectroscopy were applied to characterize the unique structure of the electrocatalyst. In comparison to the commercial Pt/C and Ru Oelectrodes, the newly prepared Fe@Fe-N-C presented a superb bifunctional performance with its narrow potential difference (E) of 0.73 V, which is ascribed to the metallic Fe nanoparticles that boosts the adsorption and activation of oxygen on the active sites with an enhanced Oadsorption capacity of 7.88 cm~3gand synergistically functionalizes the iron atoms dispersed on the nanotubes. A rechargeable zinc-air battery based on Fe@Fe-N-C exhibited a superior open-circuit voltage (1.45 V),power density (106.5 m W cm), and stable cycling performance. The green technique developed in this work for the fabrication of functional nanotubes raises the prospect of making more efficient electrocatalysts for sustainable energy cells.
引用
收藏
页码:306 / 313
页数:8
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