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An effective coupling of nanostructured Si and gel polymer electrolytes for high-performance lithium-ion battery anodes
被引:24
|作者:
Bok, Taesoo
[1
]
Cho, Sung-Ju
[1
]
Choi, Sinho
[1
]
Choi, Keun-Ho
[1
]
Park, Hyungmin
[1
]
Lee, Sang-Young
[1
]
Park, Soojin
[1
]
机构:
[1] Ulsan Natl Inst Sci & Technol, Dept Energy Engn, Sch Energy & Chem Engn, UNIST Gil 50, Ulsan 689798, South Korea
来源:
基金:
新加坡国家研究基金会;
关键词:
LONG CYCLE LIFE;
SILICON NANOWIRES;
ENERGY-STORAGE;
COMPOSITE;
REDUCTION;
CAPACITY;
CELLS;
D O I:
10.1039/c5ra24256h
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Nanostructured silicon has garnered considerable attention as a promising lithium-ion battery anode material that can mitigate volume expansion-induced pulverization during electrochemical lithiation-delithiation reaction. However, the advantageous effect of the nanostructured silicon materials is often shadowed by electrochemically-vigorous liquid electrolytes. Herein, a variety of silicon particles featuring well-defined nanostructures were synthesized and then combined with chemically-crosslinked, triacrylate-based gel polymer electrolytes (GPEs), with an aim to pursue unprecedented synergistic coupling and its versatile applicability for high-performance silicon anodes. The silicon anode combined with the GPE showed a specific capacity of over 2000 mA h g(-1) after 100 cycles, excellent discharge rate capability (capacity of 80% at 5.0C with respect to 0.2C), and volume change of 53% relative to a control system (silicon anode/liquid electrolyte). Excellent flexibility of the GPE with reliable electrochemical properties is believed to play a viable role as a mechanical cushion that can alleviate the stress and strain of silicon materials inevitably generated during repeated charge/discharge cycling. The nanostructured silicon/GPE-based coupling strategy presented herein opens a new way to enable a significant improvement in the electrochemical performance and long-term durability of high-capacity silicon anodes.
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页码:6960 / 6966
页数:7
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