Synthesis of Large Arrays of Well-Aligned Carbon Nanotubes on Glass

Синтез массивов хорошо ориентированных углеродных нанотрубок на стекле
Zhi Ren, Zhiwei Huang, Jiasai Xu, Jinhui Wang, Peter J. Bush, Michael P. Siegal, P. N. Provencio
1998-11-06

acetylenealigned carbon nanotubesammonianickel-coated glassplasma-enhanced hot filament chemical vapor deposition
Free-standing aligned carbon nanotubes have previously been grown above 700 degreesC on mesoporous silica embedded with iron nanoparticles. Here, carbon nanotubes aligned over areas up to several square centimeters were grown on nickel-coated glass below 666 degreesC by plasma-enhanced hot filament chemical vapor deposition. Acetylene gas was used as the carbon source and ammonia gas was used as a catalyst and dilution gas. Nanotubes with controllable diameters from 20 to 400 nanometers and lengths from 0. 1 to 50 micrometers were obtained. Using this method, large panels of aligned carbon nanotubes can be made under conditions that are suitable for device fabrication.
1
Acetylene served as the carbon source, while ammonia functioned as both catalyst and dilution gas.
2
Large arrays of well-aligned carbon nanotubes were grown across areas up to several square centimeters on nickel-coated glass.
3
Plasma-enhanced hot filament chemical vapor deposition enabled nanotube growth below 666 °C, lower than previously reported temperatures above 700 °C.
4
The growth conditions support fabrication of large aligned nanotube panels suitable for device manufacturing.
5
The synthesized nanotubes had controllable diameters ranging from 20 to 400 nanometers and lengths from 0.1 to 50 micrometers.

Large arrays of well-aligned carbon nanotubes grown on nickel-coated glass

The scalable low-temperature growth and controllable geometry of aligned carbon nanotubes for device-fabrication-compatible panels

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Publication Date
1998-11-06
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Authors
Zhi Ren
Zhiwei Huang
Jiasai Xu
Jinhui Wang
Peter J. Bush
Michael P. Siegal
P. N. Provencio
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