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Energy accommodation of gas molecules with free-standing films of vertically aligned single-walled carbon nanotubes

机译:气体分子的能量容纳具有垂直对齐的单壁碳纳米管的独立式薄膜

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The scattering process of gas molecules on vertically aligned single-walled carbon nanotubes (VA-SWNTs) was investigated by the molecular beam technique. To investigate interactions between VA-SWNT films themselves and helium gas molecules without the presence of substrates, free-standing films were used. The scattered molecules are divided into three components; reflected molecules, diffusively transmitted molecules, and directly transmitted molecules without interaction with SWNTs. Even with the thin film, most molecules have interacted with the films, which suggests that most molecules have interacted at the randomly oriented layer at the topmost of the films. Because of low accommodation coefficients of helium gas, VA-SWNTs films are thought to be useful as a surface modification to enhance energy accommodation.
机译:通过分子束技术研究了垂直对齐的单壁碳纳米管(VA-SWNT)上的气体分子的散射过程。为了在不存在基材的情况下研究VA-SWNT薄膜本身和氦气分子之间的相互作用,使用独立膜。散射分子分为三个组分;反射分子,漫射透射分子,并直接透过的分子而不与SWNT相互作用。即使用薄膜,大多数分子也与薄膜相互作用,这表明大多数分子已经在薄膜顶部的随机取向层处相互作用。由于氦气气体的低容纳系数,VA-SWNT薄膜被认为是用于增强能量应合的表面改性。

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