Effects of ball-milling on lithium insertion into multi-walled carbon nanotubes synthesized by thermal chemical vapour deposition

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The effects of ball-milling on Li insertion into multi-walled carbon nanotubes (MWNTs) are presented. The MWNTs are synthesized on supported catalysts by thermal chemical vapour deposition, purified, and mechanically ball-milled by the high energy ball-milling. The purified MWNTs and the ball-milled MWNTs were electrochemically inserted with Li. Structural and chemical modifications in the ball-milled MWNTs change the insertion-extraction properties of Li ions into/from the ball-milled MWNTs. The reversible capacity (C-rev) increases with increasing ball-milling time, namely, from 351mAhg(-1) (Li0.9C6) for the purified MWNTs to 641mAhg(-1) (Li1.7C6) for the ball-milled MWNTs. The undesirable irreversible capacity (C-irr) decreases continuously with increase in the ball-milling time, namely, from 1012 mAh g(-1) (Li2.7C6) for the purified MWNTs to 518 mAh g(-1) (Li1.4C6) for the ball-milled MWNTs. The decrease in C-irr of the ball-milled samples results in an increase in the coulombic efficiency from 25% for the purified samples to 50% for the ball-milled samples. In addition, the ball-milled samples maintain a more stable capacity than the purified samples during charge-discharge cycling. (c) 2005 Elsevier B.V All rights reserved.
Publisher
ELSEVIER SCIENCE BV
Issue Date
2006-06
Language
English
Article Type
Article
Keywords

ELECTROCHEMICAL INTERCALATION; CVD

Citation

JOURNAL OF POWER SOURCES, v.157, pp.507 - 514

ISSN
0378-7753
URI
http://hdl.handle.net/10203/25673
Appears in Collection
MS-Journal Papers(저널논문)
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