Structure and lithium insertion properties of carbon nanotubes

被引:202
作者
Wu, GT [1 ]
Wang, CS
Zhang, XB
Yang, HS
Qi, ZF
He, PM
Li, WZ
机构
[1] Zhejiang Univ, Dept Phys, Hangzhou 310027, Peoples R China
[2] Zhejiang Univ, Dept Mat Sci & Engn, Hangzhou 310027, Peoples R China
关键词
D O I
10.1149/1.1391828
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Carbon nanotubes were obtained by pyrolysis of acetylene or ethylene catalyzed by iron or iron oxide nanoparticles. The morphology, microstructure, and lithium insertion properties of these carbon nanotubes were investigated by transmission electron microscopy, high-resolution transmission electron microscopy, X-ray diffraction, Raman spectroscopy, and electrochemical measurements, respectively. The results showed that the structures of the carbon nanotubes play major roles in both specific capacity and cycle life. Slightly graphitized carbon nanotubes showed a specific capacity of 640 mAh/g during the first charge, whereas well-graphitized carbon nanotubes showed a specific capacity of 282 mAh/g during the first charge. After 20 charge/discharge cycles the charge capacity of the slightly graphitized samples degraded to 65.3% of their original charge capacities, but the well-graphitized samples maintained 91.5% of their original charge capacities. The effects of charge-discharge rates and cycling temperature on lithium insertion properties of carbon nanotubes with different extents of graphitization are discussed. (C) 1999 The Electrochemical Society. S0013-4651(98)08-024-0. All rights reserved.
引用
收藏
页码:1696 / 1701
页数:6
相关论文
共 30 条
[1]   THEORETICAL-STUDIES OF INTERSTITIALS IN GRAPHITE [J].
ABRAHAMSON, J ;
MACLAGAN, RGAR .
CARBON, 1984, 22 (03) :291-295
[2]   MECHANISMS FOR LITHIUM INSERTION IN CARBONACEOUS MATERIALS [J].
DAHN, JR ;
ZHENG, T ;
LIU, YH ;
XUE, JS .
SCIENCE, 1995, 270 (5236) :590-593
[3]   INTERCALATION COMPOUNDS OF GRAPHITE [J].
DRESSELHAUS, MS ;
DRESSELHAUS, G .
ADVANCES IN PHYSICS, 1981, 30 (02) :139-326
[4]   LARGE-SCALE SYNTHESIS OF CARBON NANOTUBES [J].
EBBESEN, TW ;
AJAYAN, PM .
NATURE, 1992, 358 (6383) :220-222
[5]   VIBRATIONAL-MODES OF CARBON NANOTUBES - SPECTROSCOPY AND THEORY [J].
EKLUND, PC ;
HOLDEN, JM ;
JISHI, RA .
CARBON, 1995, 33 (07) :959-972
[6]   THE PRODUCTION AND STRUCTURE OF PYROLYTIC CARBON NANOTUBES (PCNTS) [J].
ENDO, M ;
TAKEUCHI, K ;
IGARASHI, S ;
KOBORI, K ;
SHIRAISHI, M ;
KROTO, HW .
JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 1993, 54 (12) :1841-1848
[7]   STUDIES OF LITHIUM INTERCALATION INTO CARBONS USING NONAQUEOUS ELECTROCHEMICAL-CELLS [J].
FONG, R ;
VONSACKEN, U ;
DAHN, JR .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1990, 137 (07) :2009-2013
[8]   CRYSTALLITE GROWTH IN GRAPHITIZING AND NON-GRAPHITIZING CARBONS [J].
FRANKLIN, RE .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1951, 209 (1097) :196-&
[9]   RAMAN STUDIES OF CARBON NANOTUBES [J].
HIURA, H ;
EBBESEN, TW ;
TANIGAKI, K ;
TAKAHASHI, H .
CHEMICAL PHYSICS LETTERS, 1993, 202 (06) :509-512
[10]   HELICAL MICROTUBULES OF GRAPHITIC CARBON [J].
IIJIMA, S .
NATURE, 1991, 354 (6348) :56-58