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Trace fluorinated-carbon-nanotube-induced lithium dendrite elimination for high-performance lithium-oxygen cells
被引:14
|作者:
Cheng, Hao
[1
]
Mao, Yangjun
[1
]
Lu, Yunhao
[2
]
Zhang, Peng
[3
]
Xie, Jian
[1
,4
]
Zhao, Xinbing
[1
,4
]
机构:
[1] Zhejiang Univ, Sch Mat Sci & Engn, State Key Lab Silicon Mat, Hangzhou 310027, Peoples R China
[2] Zhejiang Univ, Dept Phys, Hangzhou 310027, Peoples R China
[3] Hangzhou Skyrich Power Co Ltd, Hangzhou 310022, Peoples R China
[4] Key Lab Adv Mat & Applicat Batteries Zhejiang Pro, Hangzhou 310027, Peoples R China
来源:
基金:
中国国家自然科学基金;
关键词:
SOLID-ELECTROLYTE INTERPHASE;
LONG-CYCLE-LIFE;
METAL ANODE;
BATTERIES;
SEI;
D O I:
10.1039/c9nr09749j
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Lithium metal has attracted considerable attention due to its ultrahigh theoretical capacity. Nevertheless, issues such as dendritic Li formation and instability of the Li metal/electrolyte interface still restrain its practical applications. In this work, we design a Li composite anode with fluorinated carbon nanotubes (FCNT) fabricated by a simple melting-soaking method. It was found that trace amounts of added FCNT (only 1.6 wt%) lead to a significant chemical/electrochemical stability of metallic Li. The obtained Li/FCNT composite electrode (LFCNT) exhibits much better stability in open air and electrolyte than bare Li. The LFCNT enables uniform plating/stripping of metallic Li, preventing the dendrite formation during repeated cycling. In situ optical microscopy observations confirm dendrite-free Li deposition with the mechanism clarified by density functional theory calculations. Compared with bare Li, the LFCNT shows a considerable improvement in rate capability, voltage hysteresis and cycle performance, sustaining stable cycling at a high current density of 3 mA cm(-2) or a capacity up to 5 mA h cm(-2). Li-O-2 cells with a LFCNT anode exhibit a long life of 135 cycles at a capacity of 1000 mA h g(-1), which is six-fold than that with the bare Li anode.
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页码:3424 / 3434
页数:11
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