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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Atomic hydrogen and oxygen adsorptions in single-walled zigzag silicon nanotubes
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Atomic hydrogen and oxygen adsorptions in single-walled zigzag silicon nanotubes

机译:单壁之字形硅纳米管中的原子氢和氧吸附

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Ab initio calculations have been performed to study the electronic and geometric structure properties of zigzag silicon nanotubes. Full geometry and spin optimizations have been performed without any symmetry constraints with an all electron 3-21G*basis set and the B3LYP hybrid functional. The largest zigzag SiNT studied here, (12, 0), has a binding energy per atom of 3.584 eV. Atomic hydrogen and oxygen adsorptions on (9, 0) and (10, 0) nanotubes have also been studied by optimizing the distances of the adatoms from both inside and outside the tube. The adatom is initially placed in four adsorption sites-parallel bridge (PB), zigzag bridge (ZB), hollow, and on-top site. The on-top site is the most preferred site for hydrogen atom adsorbed on (9, 0), with an adsorption energy of 3.0 eV and an optimized distance of 1.49 ? from the adatom to the nearest silicon atom. For oxygen adsorption on (9, 0), the most preferred site is the ZB site, with an adsorption energy of 5.987 eV and an optimized distance of 1.72 ?. For atomic hydrogen adsorption on (10, 0), the most preferred site is also the on-top site with an adsorption energy of 3.174 eV and an optimized distance of 1.49 ?. For adsorption of atomic oxygen on (10, 0), the most preferred site is PB site, with an adsorption energy of 6.306 eV and an optimized distance of 1.71 ?. The HOMO-LUMO gaps of (9, 0) after adsorptions of hydrogen and oxygen atoms decrease while the HOMO-LUMO gaps of (10, 0) increase after adsorption of hydrogen and oxygen.
机译:已经进行了从头算计算来研究之字形硅纳米管的电子和几何结构性质。在全电子3-21G *基集和B3LYP杂化功能的情况下,已经进行了完整的几何和自旋优化,没有任何对称性约束。此处研究的最大之字形SiNT(12,0),每个原子的结合能为3.584 eV。还已经通过优化吸附原子从管内和管外的距离研究了在(9,0)和(10,0)纳米管上的原子氢和氧吸附。最初将吸附器放置在四个吸附位点-平行桥(PB),锯齿形桥(ZB),空心和顶置位。最上面的位置是吸附在(9,0)上的氢原子的最优选位置,其吸附能为3.0 eV,最佳距离为1.49?从吸附原子到最近的硅原子。对于在(9,0)上的氧吸附,最优选的部位是ZB部位,其吸附能为5.987eV,最佳距离为1.72Ω。对于在(10,0)上的原子氢吸附,最优选的位置也是顶部位置,其吸附能为3.174eV,最佳距离为1.49Ω。为了使原子氧吸附在(10,0)上,最优选的部位是PB部位,其吸附能为6.306eV,最佳距离为1.71Ω。吸附氢和氧原子后(9,0)的HOMO-LUMO间隙减小,而吸附氢和氧后(10,0)的HOMO-LUMO间隙增加。

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