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Physical and electrochemical properties of synthesized carbon nanotubes [CNTs] on a metal substrate by thermal chemical vapor depositionopen access

Authors
Gwon, Yong HwanHa, Jong KeunCho, Kwon KooKim, Hye Sung
Issue Date
5-Jan-2012
Publisher
SPRINGER
Keywords
carbon nanotubes; metal substrate; electrochemical property; Au layer; catalyst
Citation
NANOSCALE RESEARCH LETTERS, v.7
Indexed
SCIE
SCOPUS
Journal Title
NANOSCALE RESEARCH LETTERS
Volume
7
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/22389
DOI
10.1186/1556-276X-7-61
ISSN
1931-7573
1556-276X
Abstract
Multi-walled carbon nanotubes were synthesized on a Ni/Au/Ti substrate using a thermal chemical vapor deposition process. A Ni layer was used as a catalyst, and an Au layer was applied as a barrier in order to prevent diffusion between Ni and Ti within the substrate during the growth of carbon nanotubes. The results showed that vertically aligned multi-walled carbon nanotubes could be uniformly grown on the Ti substrate (i.e., metal substrate), thus indicating that the Au buffer layer effectively prevented interdiffusion of the catalyst and metal substrate. Synthesized carbon nanotubes on the Ti substrate have the diameter of about 80 to 120 nm and the length of about 5 to 10 mu m. The Ti substrate, with carbon nanotubes, was prepared as an electrode for a lithium rechargeable battery, and its electrochemical properties were investigated. In a Li/CNT cell with carbon nanotubes on a 60-nm Au buffer layer, the first discharge capacity and discharge capacity after the 50th cycle were 210 and 80 mu Ah/cm(2), respectively.
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Cho, Kwon Koo
대학원 (나노신소재융합공학과)
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