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Lithium insertion into purified and etched multi-walled carbon nanotubes synthesized on supported catalysts by thermal CVD

机译:将锂插入通过热CVD在负载型催化剂上合成的纯化和蚀刻的多壁碳纳米管中

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The effects of chemical processing on Li insertion into multi-walled carbon nanotubes (MWNTs) are reported. MWNTs were synthesized on the supported catalysts by the thermal CVD method, purified and chemically etched. And then the purified MWNTs and the etched MWNTs were electrochemically inserted with Li. The reversible capacity increased with increase in the etching time from 351 mAh/g (Li0.9C6) for the purified MWNTs to 681 mAh/g (Li1.8C6) for the etched MWNTs. The irreversible capacity also increased with increase in the etching time from 1012 mAh/g (Li2.7C6)) for the purified MWNTs to 1229 mAh/g (Li3.3C6) for the etched MWNTs. The structural and chemical modifications in the etched MWNTs facilitated an insertion of Li ions into the etched MWNTs and enhanced the reversible capacity, but the large surface area of the etched MWNTs induced the large irreversible capacity. The extraction of Li ions from the purified MWNTs and the etched MWNTs had a great hindrance. (C) 2004 Elsevier Ltd. All rights reserved.
机译:据报道化学处理对锂插入多壁碳纳米管(MWNTs)的影响。通过热CVD法在负载的催化剂上合成了MWNT,对其进行了纯化和化学蚀刻。然后,将纯化的MWNT和蚀刻的MWNT用Li电化学插入。可逆容量随着蚀刻时间的增加而增加,从纯化的MWNT的351 mAh / g(Li0.9C6)到蚀刻的MWNT的681 mAh / g(Li1.8C6)。不可逆容量也随着蚀刻时间的增加而增加,从纯化的MWNT的1012 mAh / g(Li2.7C6)增至蚀刻的MWNT的1229 mAh / g(Li3.3C6)。蚀刻的MWNT中的结构和化学修饰促进了锂离子到蚀刻的MWNT中的插入并增强了可逆容量,但是蚀刻的MWNT的大表面积引起了大的不可逆容量。从纯化的MWNT和蚀刻的MWNT中提取锂离子具有很大的障碍。 (C)2004 Elsevier Ltd.保留所有权利。

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