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ADVANCED CATALYSTS FOR THE LARGE SCALE PRODUCTION OF HIGH PURITY CARBON NANOTUBES WITH CHEMICAL VAPOR DEPOSITION
ADVANCED CATALYSTS FOR THE LARGE SCALE PRODUCTION OF HIGH PURITY CARBON NANOTUBES WITH CHEMICAL VAPOR DEPOSITION
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机译:大规模生产化学气相沉积高纯度碳纳米管的先进催化剂
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摘要
In the present invention, advanced catalysts for the production of high purity and high quality carbon nanotubes with the technique of chemical vapor deposition are described. The catalyst or the catalytic substrate on which carbon is deposited and grows in the form of nanotubes consists of the carrier or the substrate, which is aluminum oxide (alumina, Al2O3) or anyone of the other metal oxides that are usually employed as catalytic media, the active phase which is iron oxide (preferably hematite (Fe2O3)) and a promoter, such as molybdenum oxide (MoO3). The ratio of these three components plays a very important role in the yield of the catalyst. The use of these catalysts allows the production of carbon nanotubes at high rates and with yields per mass unit of catalytic material, which are much higher than those achieved with other methods of carbon nanotube production and other catalysts. The high yields, the high production rates and the very low cost of the catalysts that are employed in the developed method lead to the production of materials that cost much less than commercially available materials of similar or lower quality.
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