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A carbon nanotube field-effect transistor (CNTFET) is a field-effect transistor that utilizes a single carbon nanotube (CNT) or an array of carbon nanotubes as the channel material, instead of bulk silicon, as in the traditional MOSFET structure. There have been major developments since CNTFETs were first demonstrated in 1998.
Of the various means for nanotube synthesis, CVD shows the most promise for industrial-scale deposition, because of its price/unit ratio, and because CVD is capable of growing nanotubes directly on a desired substrate, whereas the nanotubes must be collected in the other growth techniques.
CNT membranes can filter carbon dioxide from power plant emissions. [citation needed] CNT can be filled with biological molecules, aiding biotechnology. [citation needed] CNT have the potential to store between 4.2 and 65% hydrogen by weight. If they can be mass-produced economically, 13.2 litres (2.9 imp gal; 3.5 US gal) of CNT could contain ...
The U.S. Marshals Service in the District of Nevada issued a plea for help and additional reward money to find a man wanted for killing his girlfriend during an argument a year and a half ago in ...
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A carbon nanotube (CNT) is a tube made of carbon with a diameter in the nanometre range . They are one of the allotropes of carbon. Two broad classes of carbon nanotubes are recognized: Single-walled carbon nanotubes (SWCNTs) have diameters around 0.5–2.0 nanometres, about 100,000 times smaller than the width of a human hair.
Afterward, Jessica showed the rest of the gifts her family bought her: a cooking pan, which she remembers mentioning last Christmas; a new Oura ring, which was on her list; a new handbag; and perfume.
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