Structure and Electronic Properties of Carbon Nanotubes

Структура и электронные свойства углеродных нанотрубок
Teri W. Odom, Jin-Lin Huang, Philip Kim, Charles M. Lieber
2000-02-15

electronic band structurequantum size effectsscanning tunneling spectroscopysingle-walled carbon nanotubestight-binding calculations
Scanning tunneling microscopy, spectroscopy, and tight-binding calculations have been used to elucidate the unique structural and electronic properties of single-walled carbon nanotubes (SWNTs). First, the unique relationship between SWNT atomic structure and electronic properties, and the richness of structures observed in both purified and chemically etched nanotube samples are discussed. Second, a more detailed picture of SWNT electronic band structure is developed and compared with experimental tunneling spectroscopy measurements. Third, experimental and theoretical investigations of localized structures, such as bends and ends in nanotubes, are presented. Last, quantum size effects in nanotubes with lengths approaching large molecules are discussed. The implications of these studies and important future directions are considered.
1
Localized nanotube features, including bends and ends, exhibit experimentally and theoretically investigated structural and electronic behavior.
2
Quantum size effects become important in single-walled carbon nanotubes whose lengths approach those of large molecules.
3
Scanning tunneling spectroscopy measurements and tight-binding calculations provide a detailed characterization of single-walled carbon nanotube electronic band structures.
4
The atomic structure of single-walled carbon nanotubes is uniquely linked to their electronic properties, producing a rich range of observed structures.
5
The studies identify implications for nanotube physics and motivate future investigations of structure, electronic properties, and nanoscale confinement.

single-walled carbon nanotubes (SWNTs)

their structural and electronic properties, including the structure–electronic-property relationship, band structure, localized bends and ends, and quantum size effects

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2000-02-15
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Authors
Teri W. Odom
Jin-Lin Huang
Philip Kim
Charles M. Lieber
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