Authors
Xifei Li, Jian Liu, Yong Zhang, Yongliang Li, Hao Liu, Xiangbo Meng, Jinli Yang, Dongsheng Geng, Dongniu Wang, Ruying Li, Xueliang Sun
Publication date
2012/1/1
Journal
Journal of Power Sources
Volume
197
Pages
238-245
Publisher
Elsevier
Description
A floating catalyst chemical vapor deposition method has been developed to synthesize carbon nanotubes doped with a high concentration of nitrogen. Their electrochemical performance as anodes for lithium ion batteries (LIBs) in comparison to pristine carbon nanotubes (CNTs) has been investigated. X-ray photoelectron spectroscopy results indicated that the nitrogen content reaches as high as 16.4at.%. Bamboo-like compartments were fabricated as shown by high resolution transmission electron microscopy. High concentration nitrogen doped carbon nanotubes (HN-CNTs) show approximately double reversible capacity of CNTs: 494mAhg−1 vs. 260mAhg−1, and present a much better rate capability than CNTs. The significantly superior electrochemical performance could be related to the high electrical conductivity and the larger number of defect sites in HN-CNTs for anodes of LIBs.
Total citations
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