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Carbon-Free CoO Mesoporous Nanowire Array Cathode for High-Performance Aprotic Li-O2 Batteries
被引:62
|作者:
Wu, Baoshan
[1
]
Zhang, Hongzhang
[1
]
Zhou, Wei
[1
,2
]
Wang, Meiri
[1
]
Li, Xianfeng
[1
]
Zhang, Huamin
[1
]
机构:
[1] Chinese Acad Sci, Dalian Inst Chem Phys, Energy Storage Div, Dalian 116023, Peoples R China
[2] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Li-O-2;
battery;
CoO nanowire;
carbon-free cathode;
synergistic effect;
Li-air;
LITHIUM-OXYGEN BATTERIES;
LI-AIR BATTERIES;
POROUS GRAPHENE;
BIFUNCTIONAL CATALYST;
ENERGY DENSITY;
LONG-LIFE;
REDUCTION;
ELECTROLYTE;
CAPACITY;
ARCHITECTURE;
D O I:
10.1021/acsami.5b07003
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
Although various kinds of catalysts have been developed for aprotic Li-O-2 battery application, the carbon-based cathodes are still vulnerable to attacks from the discharge intermediates or products, as well as the accompanying electrolyte decomposition. To ameliorate this problem, the free-standing and carbon-free CoO nanowire array cathode was purposely designed for Li-O-2 batteries. The single CoO nanowire formed as a special mesoporous structure, owing even comparable specific surface area and pore volume to the typical Super-P carbon particles. In addition to the highly selective oxygen reduction/evolution reactions catalytic activity of CoO cathodes, both excellent discharge specific capacity and cycling efficiency of Li-O-2 batteries were obtained, with 4888 mAh gcoO(-1) and 50 cycles during 500 h period. Owing to the synergistic effect between elaborate porous structure and selective intermediate absorption on CoO crystal, a unique bimodal growth phenomenon of discharge products was occasionally observed, which further offers a novel mechanism to control the formation/decomposition morphology of discharge products in nanoscale. This research work is believed to shed light on the future development of high-performance aprotic Li-O-2 batteries.
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页码:23182 / 23189
页数:8
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