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Theoretical study of sarin adsorption on (12,0) boron nitride nanotube doped with silicon atoms

机译:硅原子掺杂(12,0)氮化硼纳米管掺杂的Sarin吸附的理论研究

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摘要

Sarin gas is one of the most lethal nerve agent used in chemical warfare, which its detection is import to prevent a chemical attack and to identify a contamination area. Herein, density functional theory was used to investigate the (12,0) boron nitride nanotube (BNNT) and Si-doped BNNT as possible candidates to sarin detection. The Si-atoms doped improve the electronic properties of nanotubes by altering the electrostatic potential, HOMO and LUMO energies. Based in the adsorption energies and the conductivity increased to similar to 33 and 350%, respectively, for Si- and 2Si-BNNT imply that they can be used for sarin detection.
机译:Sarin Gas是化学战中最致死的神经剂之一,其检测是进口,以防止化学攻击并识别污染区域。 在此,使用密度函数理论用于研究(12,0)氮化硼纳米管(BNNT)和Si掺杂的BNNT作为索林检测的候选物。 通过改变静电电位,同性恋和卢比能量,Si-原子掺杂了纳米管的电子性质。 基于吸附能量,电导率分别增加至33和350%,对于Si-and 2si-BNNT,暗示它们可用于Sarin检测。

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