Double-walled carbon nanotubes: synthesis, structural characterization, and application
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서지정보
ㆍ발행기관 : 한국탄소학회
ㆍ수록지정보 : Carbon Letters / 15권 / 2호
ㆍ저자명 : Yoong Ahm Kim, Kap-Seung Yang, Hiroyuki Muramatsu, Takuya Hayashi, Morinobu Endo, Mauricio Terrones, Mildred S. Dresselhaus
ㆍ저자명 : Yoong Ahm Kim, Kap-Seung Yang, Hiroyuki Muramatsu, Takuya Hayashi, Morinobu Endo, Mauricio Terrones, Mildred S. Dresselhaus
목차
1. Introduction2. Synthesis of Catalytically Grown High Purity DWCNTs
3. Fabrication of Thin, Flexible, and Tough DWCNT Buckypaper
4. Raman and X-ray Diffraction Characterizations
5. Thermal Stability of DWCNTs
6. Pore Structure and Oxidative Stability of the Bundled DWCNTs
7. Strong and Stable Photoluminescence from the Semiconducting Inner Tubes within Double Walled Carbon Nanotubes
8. Outer Tube Chemistry
10. Superconducting Behavior of the Bundled
DWCNTs
11. Promising Applications of DWCNTs
12. Conclusions
Acknowledgements
References
한국어 초록
Double walled carbon nanotubes (DWCNTs) are considered an ideal model for studyingthe coupling interactions between different concentric shells in multi-walled CNTs. Dueto their intrinsic coaxial structures they are mechanically, thermally, and structurally morestable than single walled CNTs. Geometrically, owing to the buffer-like function of the outertubes in DWCNTs, the inner tubes exhibit exciting transport and optical properties that lendthem promise in the fabrication of field-effect transistors, stable field emitters, and lithiumion batteries. In addition, by utilizing the outer tube chemistry, DWCNTs can be usefulfor anchoring semiconducting quantum dots and also as effective multifunctional fillers inproducing tough, conductive transparent polymer films. The inner tubes meanwhile preservetheir excitonic transitions. This article reviews the synthesis of DWCNTs, their electronicstructure, transport, and mechanical properties, and their potential uses.영어 초록
Double walled carbon nanotubes (DWCNTs) are considered an ideal model for studyingthe coupling interactions between different concentric shells in multi-walled CNTs. Due
to their intrinsic coaxial structures they are mechanically, thermally, and structurally more
stable than single walled CNTs. Geometrically, owing to the buffer-like function of the outer
tubes in DWCNTs, the inner tubes exhibit exciting transport and optical properties that lend
them promise in the fabrication of field-effect transistors, stable field emitters, and lithium
ion batteries. In addition, by utilizing the outer tube chemistry, DWCNTs can be useful
for anchoring semiconducting quantum dots and also as effective multifunctional fillers in
producing tough, conductive transparent polymer films. The inner tubes meanwhile preserve
their excitonic transitions. This article reviews the synthesis of DWCNTs, their electronic
structure, transport, and mechanical properties, and their potential uses.
참고 자료
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