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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Multiwalled carbon nanotubes as masks against carbon and argon irradiation. A molecular dynamics study
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Multiwalled carbon nanotubes as masks against carbon and argon irradiation. A molecular dynamics study

机译:多壁碳纳米管可屏蔽碳和氩气。分子动力学研究

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Experiments showed that multiwalled carbon nanotubes (MWCNT) can be used as masks against irradiation to create metallic nanowires in a substrate. In order to understand the limitations of this application, it is interesting to know the energy and number of carbon atoms emerging from the MWCNT after the irradiation and how the structure of the MWCNT is modified. Using a molecular dynamics code that we have previously developed, we have simulated the continuous irradiation of MWCNT with carbon and argon projectiles. We have obtained that the use of carbon instead of argon to irradiate the MWCNT increases de effectiveness of the MWCNTs as masks, due to the ability of the carbon projectiles to be part of the MWCNT structure and partially mend the damage produced during irradiation. We have analyzed the number, energy, and spatial distribution of the recoils generated during irradiation and the change of the MWCNT structure as a function of the incident energy (100 and 500 eV), flu-ence (up to 4.5 · 10~(15) ions/cm~2), and number of shells (up to 5-shells) of the MWCNT. These results determine the effectiveness of MWCNT as a mask, being useful to understand whether the atoms emerging from the MWCNT produce damage in the substrate or not. We find that for carbon projectiles the efficiency of MWCNT as masks does not depend much on the fluence, but on the number of nanotube shells and projectile incident energy. On the other hand, for a given nanotube and fluence, we observe a threshold incident energy below which the nanotube acts as a perfect mask.
机译:实验表明,多壁碳纳米管(MWCNT)可以用作防止辐射的掩模,从而在基板上形成金属纳米线。为了理解该应用的局限性,有趣的是要知道辐照后从MWCNT出来的碳原子的能量和数量,以及MWCNT的结构如何被修饰。使用我们先前开发的分子动力学代码,我们模拟了碳和氩射弹对MWCNT的连续照射。我们已经获得了使用碳代替氩气辐照MWCNT的方法,由于碳弹丸成为MWCNT结构的一部分并部分修复了辐照过程中产生的损伤的能力,因此增加了CNT用作掩膜的效率。我们分析了辐照过程中产生的后坐力的数量,能量和空间分布,以及MWCNT结构随入射能量(100和500 eV),通量(最大4.5·10〜(15离子/ cm〜2)和MWCNT的壳数(最多5个壳)。这些结果确定了MWCNT作为掩膜的有效性,有助于理解从MWCNT出来的原子是否会在基底中产生损伤。我们发现,对于碳弹丸,作为掩膜的MWCNT的效率在很大程度上不取决于注量,而是取决于纳米管壳的数量和弹丸的入射能。另一方面,对于给定的纳米管和注量,我们观察到阈值入射能量,低于该阈值时,纳米管将充当完美的掩模。

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