Electrical Properties and Applications of Carbon Nanotube Structures

Электрические свойства и применения структур из углеродных нанотрубок
Prabhakar R. Bandaru
2007-03-06

carbon nanotube structureselectroluminescencephotoconductivitysuperconductivitythermoelectricity
The experimentally verified electrical properties of carbon nanotube structures and manifestations in related phenomena such as thermoelectricity, superconductivity, electroluminescence, and photoconductivity are reviewed. The possibility of using naturally formed complex nanotube morphologies, such as Y-junctions, for new device architectures are then considered. Technological applications of the electrical properties of nanotube derived structures in transistor applications, high frequency nanoelectronics, field emission, and biological sensing are then outlined. The review concludes with an outlook on the technological potential of nanotubes and the need for new device architectures for nanotube systems integration.
1
Carbon nanotube electrical properties support applications in transistors, high-frequency nanoelectronics, field emission, and biological sensing.
2
Naturally formed complex nanotube morphologies, including Y-junctions, are identified as potential building blocks for novel device architectures.
3
The review highlights nanotubes’ technological potential while emphasizing the need for new device architectures to integrate nanotube systems.
4
The review summarizes experimentally verified electrical properties of carbon nanotube structures and their manifestations in thermoelectricity, superconductivity, electroluminescence, and photoconductivity.

carbon nanotube structures

their electrical properties and related phenomena, including thermoelectricity, superconductivity, electroluminescence, photoconductivity, and technological applications

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2007-03-06
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Prabhakar R. Bandaru
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