Fe/Fe2O3 nanoparticles anchored on Fe-N-doped carbon nanosheets as bifunctional oxygen electrocatalysts for rechargeable zinc-air batteries

被引:123
|
作者
Zang, Yipeng [1 ,2 ]
Zhang, Haimin [1 ]
Zhang, Xian [1 ,2 ]
Liu, Rongrong [1 ,2 ]
Liu, Shengwen [1 ]
Wang, Guozhong [1 ]
Zhang, Yunxia [1 ]
Zhao, Huijun [1 ,3 ]
机构
[1] Chinese Acad Sci, Inst Solid State Phys, Anhui Key Lab Nanomat & Nanotechnol, Key Lab Mat Phys,Ctr Environm & Energy Nanomat, Hefei 230031, Peoples R China
[2] Univ Sci & Technol China, Hefei 230026, Peoples R China
[3] Griffith Univ, Ctr Clean Environm & Energy, Gold Coast Campus, Qld 4222, Australia
基金
中国国家自然科学基金;
关键词
N-doped carbon nanodots; Fe/Fe2O3@Fe-N-doped carbon; oxygen reduction reaction; oxygen evolution reaction; rechargeable zinc-air battery; NONPRECIOUS METAL CATALYST; REDUCTION REACTION; GRAPHENE; NANODOTS; NANOCRYSTALS; HYBRIDS; ARRAYS; CO;
D O I
10.1007/s12274-016-1102-1
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
Electrocatalysts with high catalytic activity and stability play a key role in promising renewable energy technologies, such as fuel cells and metal-air batteries. Here, we report the synthesis of Fe/Fe2O3 nanoparticles anchored on Fe-N-doped carbon nanosheets (Fe/Fe2O3@Fe-N-C) using shrimp shell-derived N-doped carbon nanodots as carbon and nitrogen sources in the presence of FeCl3 by a simple pyrolysis approach. Fe/Fe2O3@Fe-N-C obtained at a pyrolysis temperature of 1,000 degrees C (Fe/Fe2O3@Fe-N-C-1000) possessed a mesoporous structure and high surface area of 747.3 m(2).g(-1). As an electrocatalyst, Fe/Fe2O3@Fe-N-C-1000 exhibited bifunctional electrocatalytic activities toward the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) in alkaline media, comparable to that of commercial Pt/C for ORR and RuO2 for OER, respectively. The Zn-air battery test demonstrated that Fe/Fe2O3@Fe-N-C-1000 had a superior rechargeable performance and cycling stability as an air cathode material with an open circuit voltage of 1.47 V (vs. Ag/AgCl) and a power density of 193 mW.cm(-2) at a current density of 220 mA.cm(-2). These performances were better than other commercial catalysts with an open circuit voltage of 1.36 V and a power density of 173 mW.cm(-2) at a current density of 220 mA.cm(-2) (a mixture of commercial Pt/C and RuO2 with a mass ratio of 1: 1 was used for the rechargeable Zn-air battery measurements). This work will be helpful to design and develop low-cost and abundant bifunctional oxygen electrocatalysts for future metal-air batteries.
引用
收藏
页码:2123 / 2137
页数:15
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