Catalyzed CVD Carbon Nanotube Growth
Country: United States of America
Link to your website: http://www.firstnano.com
Description:
Catalyzed chemical vapor deposition is the most practical method for development of carbon nanotube devices. It is both scalable and compatible with integrated circuit and MEMS manufacturing processes. CVD allows high specificity of single wall or multi wall nanotubes through appropriate selection of process gasses. Carbon feedstock comes from the decomposition of a feed gas such as Methane or Ethylene.
Carbon nanotubes have been demonstrated as enabling components of various electronic and chemical-mechanical devices functional on the molecular scale. Among these devices are chemical force sensors, gas detectors, field emission displays, molecular wires, diodes, FEDs, and single-electron transistors.
To develop these devices into manufacturable products and to gain control of device assembly on the molecular level a practical technique for in situ nanotube growth is needed. Relatively low temperatures of the process and the ability to pattern the catalyst material directly on device substrates make catalytic CVD the method of choice for nanotube device development. The EasyTube™ was designed to put the power in the hands of our customers to create and innovate with this exciting new medium.

The EasyTube System was launched in early November 2001. Various academic research centers, industry leaders, and government research labs worldwide have purchased the system and are employing it currently in their research.
First Nano specializes in the manufacture of innovative, high quality process equipment suitable for the synthesis of a variety of one-dimensional nanostructures and nanomaterials. The EasyTube System is applicable to nanoscale research that intersects cross-functional disciplines in semiconductor, applied physics, biotechnology, chemical, and mechanical engineering fields.
We provide specialized solutions for nanotube/nanowire synthesis. Our engineering team can design customized systems for specific applications and research development.


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