Отрывок: Table 1. Samples. № Substrate First metallic layer Thick. (nm) Catalyst Second metallic layer Thick. (nm) Burn Atmosphere of burning 1 Si Al 150 Fe Al 10 Fired Ar 2 Si Cu 200 Fe Cu 10 Fired Ar 3 Si Al 150 Fe Al 10 Unfired - 4 Si Cu 200 Fe Cu 10 Unfired - 5 Si Cu 200 Fe Cu 10 Fired Oxygen (open chamber) + extra catalyst 6 Si Al 150 Fe Al 10 Fired Oxygen (open chamber) + extra catalyst 3. Results and discussion Experiments were conducted using different materi...
Название : Analysis and optimization of photonics devices manufacturing technologies based on carbon nanotubes
Авторы/Редакторы : Tripathi, N.
But, V.S.
Lebedev, S.A.
Sovetkina, M.A.
Kumar, S.
Дата публикации : 2019
Издательство : Изд-во «Новая техника»
Библиографическое описание : Tripathi N. Analysis and optimization of photonics devices manufacturing technologies based on carbon nanotubes / N. Tripathi, V.S. But, S.A. Lebedev, M.A. Sovetkina, S. Kumar // Сборник трудов ИТНТ-2019 [Текст] : V междунар. конф. и молодеж. шк. "Информ. технологии и нанотехнологии" : 21-24 мая : в 4 т. / Самар. нац.-исслед. ун-т им. С. П. Королева (Самар. ун-т), Ин-т систем. обраб. изобр. РАН-фил. ФНИЦ "Кристаллография и фотоника" РАН ; [под ред. Р. В. Скиданова]. - Самара: Новая техника, 2019. - Т. 1 : Компьютерная оптика и нанофотоника. - 2019. - С. 171-177.
Аннотация : The analysis and optimization of optical devices manufacturing technologies based on carbon nanotubes intended for work in the terahertz range were carried out. These processes studied in the work have practical application for the deposition of carbon nanotubes and their subsequent use as materials for prototypes of the waveguide and sensor of the terahertz range. To obtain a layer of carbon nanotubes, a chemical vapor deposition chamber was used. Various aspects of the synthesis and growth of the mechanism of CNT are considered in this article. Carbon nanotubes (CNTs) were grown on a sandwich structure based on a silicon wafer, where a layer of aluminum and copper 100 nm thick was deposited, then an iron catalyst was applied about 5 nm thick, and then copper and aluminum were deposited again, but with a thickness of 10 nm layer is also using magnetron sputtering. The growth was carried out with two variable parameters: flow rate and flow duration.
URI (Унифицированный идентификатор ресурса) : http://repo.ssau.ru/handle/Informacionnye-tehnologii-i-nanotehnologii/Analysis-and-optimization-of-photonics-devices-manufacturing-technologies-based-on-carbon-nanotubes-75271
Другие идентификаторы : Dspace\SGAU\20190418\75271
Располагается в коллекциях: Информационные технологии и нанотехнологии

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