Research on experimental method of carbon nanotubes space environment effect

Due to its unique structure and superior performance, carbon nanotubes are proposed to have great potential applications in many fields. Recently, more and more concerns have been focused on the application of carbon nanotubes in space technology. It is believed that carbon nanotubes can have a broa...

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Main Authors: Li Man, Liu Yuming, Cui Naiyuan, Yu Qiang, Li Yu, Zhang Yongtai
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01065.pdf
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spelling doaj-338f58168b6445588d59339bafbda34a2021-06-15T07:34:28ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012680106510.1051/e3sconf/202126801065e3sconf_vesep2020_01065Research on experimental method of carbon nanotubes space environment effectLi ManLiu YumingCui NaiyuanYu QiangLi YuZhang YongtaiDue to its unique structure and superior performance, carbon nanotubes are proposed to have great potential applications in many fields. Recently, more and more concerns have been focused on the application of carbon nanotubes in space technology. It is believed that carbon nanotubes can have a broad impact on space missions in future with benefits principally in space technology, such as lightweight structure materials, environment protection materials, energy gerneration and storage and nanoelcetronics. However, carbon nanotubes would suffer chemical and physical damage from the space environment when it was used in spacecraft, just like all the other space materials. The environment where spacecrafts operate is extremely intricate, primarily represented by electromagnetic irradiation, charged particle irradiation, high vacuum, cold and hot alternation, atomic oxygen erosion, clash from space debris, and other factors. The mostly effect in space environment is atomic oxygen and debris for grapheme. This paper is about the research on the experimental methods of carbon nanotubes space environment effect with atomic oxygen and space debris as examples, in a bid to propose the experimental scheme of carbon nanotubes space environment effect. It will be great helpful to promote the applications of carbon nanotubes in space technology.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01065.pdfcarbon nanotubesatomic oxygendebrisspace environment effect
collection DOAJ
language English
format Article
sources DOAJ
author Li Man
Liu Yuming
Cui Naiyuan
Yu Qiang
Li Yu
Zhang Yongtai
spellingShingle Li Man
Liu Yuming
Cui Naiyuan
Yu Qiang
Li Yu
Zhang Yongtai
Research on experimental method of carbon nanotubes space environment effect
E3S Web of Conferences
carbon nanotubes
atomic oxygen
debris
space environment effect
author_facet Li Man
Liu Yuming
Cui Naiyuan
Yu Qiang
Li Yu
Zhang Yongtai
author_sort Li Man
title Research on experimental method of carbon nanotubes space environment effect
title_short Research on experimental method of carbon nanotubes space environment effect
title_full Research on experimental method of carbon nanotubes space environment effect
title_fullStr Research on experimental method of carbon nanotubes space environment effect
title_full_unstemmed Research on experimental method of carbon nanotubes space environment effect
title_sort research on experimental method of carbon nanotubes space environment effect
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Due to its unique structure and superior performance, carbon nanotubes are proposed to have great potential applications in many fields. Recently, more and more concerns have been focused on the application of carbon nanotubes in space technology. It is believed that carbon nanotubes can have a broad impact on space missions in future with benefits principally in space technology, such as lightweight structure materials, environment protection materials, energy gerneration and storage and nanoelcetronics. However, carbon nanotubes would suffer chemical and physical damage from the space environment when it was used in spacecraft, just like all the other space materials. The environment where spacecrafts operate is extremely intricate, primarily represented by electromagnetic irradiation, charged particle irradiation, high vacuum, cold and hot alternation, atomic oxygen erosion, clash from space debris, and other factors. The mostly effect in space environment is atomic oxygen and debris for grapheme. This paper is about the research on the experimental methods of carbon nanotubes space environment effect with atomic oxygen and space debris as examples, in a bid to propose the experimental scheme of carbon nanotubes space environment effect. It will be great helpful to promote the applications of carbon nanotubes in space technology.
topic carbon nanotubes
atomic oxygen
debris
space environment effect
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01065.pdf
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