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首页> 外文期刊>Journal of Applied Physics >Structural and electronic properties of group-Ⅳ tin nanotubes and their effects on the adsorption of SO_2 molecules: Insights from DFT computations
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Structural and electronic properties of group-Ⅳ tin nanotubes and their effects on the adsorption of SO_2 molecules: Insights from DFT computations

机译:Ⅳ族锡纳米管的结构和电子性质及其对SO_2分子吸附的影响:DFT计算的启示

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摘要

The structural and electronic properties of pristine and SO2 adsorbed buckled tin nanotubes were investigated using density functional theory calculations. The effects of SO2 gas adsorption on the electronic structure of the nanotubes were analyzed in detail. SO2 molecule was initially positioned on the armchair and zigzag stanene based nanotubes with orientations through both interacting sulfur and oxygen sites. The results suggest that the considered armchair nanotubes have direct bandgaps at the K point, indicating the semiconductor characteristics of these nanotubes. Thus, these nanotubes are efficient candidates for gas sensing applications. Moreover, the considered (9, 0) and (10, 0) zigzag nanotubes also exhibit semiconductor behavior. Among the armchair nanotubes, the highest (most negative) adsorption energy belongs to (8, 8) armchair nanotube, which indicates that SO2 interaction with (8, 8) nanotube is energetically most favorable. The adsorption energy slightly increases with increasing the nanotube diameter. Besides, the adsorption of the SO2 molecule on the nanotube surface through its oxygen atoms is more favorable in energy than that through its central sulfur atom. The projected density of states of the interacting tin and oxygen atoms show the formation of chemical bonds between these atoms, as evidenced by the accumulation of electronic density at the middle of the newly formed bonds. Based on charge density difference calculations, we found the charge accumulation on the adsorbed SO2 molecule, which represents that SO2 acts as a charge acceptor. Published by AIP Publishing.
机译:利用密度泛函理论计算研究了原始和SO2吸附的屈曲锡纳米管的结构和电子性能。详细分析了SO2气体吸附对纳米管电子结构的影响。 SO2分子最初定位在扶手椅和之字形基于锡的纳米管上,并具有通过硫和氧相互作用的方向。结果表明所考虑的扶手椅状纳米管在K点具有直接带隙,表明这些纳米管的半导体特性。因此,这些纳米管是气体传感应用的有效候选者。此外,所考虑的(9,0)和(10,0)之字形纳米管也表现出半导体性能。在扶手椅状纳米管中,最高的(最负的)吸附能属于(8、8)扶手椅状纳米管,这表明SO2与(8、8)纳米管的相互作用在能量上最有利。随着纳米管直径的增加,吸附能略有增加。另外,SO 2分子通过其氧原子在纳米管表面上的吸附比通过其中心硫原子在纳米管表面上的吸附更有利。相互作用的锡和氧原子的状态预测密度显示了这些原子之间化学键的形成,这由新形成的键中间电子密度的累积证明。根据电荷密度差的计算,我们发现吸附的SO2分子上积累了电荷,这表明SO2充当电荷受体。由AIP Publishing发布。

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