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原子氢与单壁碳纳米管的相互作用:一项密度泛函理论研究。

Interaction of atomic hydrogen with single-walled carbon nanotubes: a density functional theory study.

作者信息

Barone Verónica, Heyd Jochen, Scuseria Gustavo E

机构信息

Department of Chemistry and Center for Biological and Environmental Nanotechnology, Rice University, Houston, Texas 77005, USA.

出版信息

J Chem Phys. 2004 Apr 15;120(15):7169-73. doi: 10.1063/1.1668635.

Abstract

We have studied the interaction of atomic hydrogen with (5,5) and (10,0) single-walled carbon nanotubes (SWNT) using density functional theory. These calculations use Gaussian orbitals and periodic boundary conditions. We compare results from the local spin density approximation, generalized gradient approximation (GGA), and hybrid density functionals. We have first kept the SWNT geometric structure fixed while a single H atom approaches the tube on top of a carbon atom. In that case, a weakly bound state with binding energies from -0.8 to -0.4 eV was found. Full geometry relaxation leads to a strong SWNT deformation, weakening the nearest C-C bonds and increasing the binding energy by about 1 eV. Full hydrogen coverage of the (5,5) SWNT converts this metallic nanotube into an insulator with a band gap of 3.4 eV for the GGA functional and 4.8 eV for the hybrid functional. Hybrid functionals perform similar to pure density functional theory functionals for the calculation of binding energies while band gaps critically depend on the functional choice.

摘要

我们使用密度泛函理论研究了原子氢与(5,5)和(10,0)单壁碳纳米管(SWNT)的相互作用。这些计算使用高斯轨道和周期性边界条件。我们比较了局域自旋密度近似、广义梯度近似(GGA)和杂化密度泛函的结果。我们首先保持SWNT几何结构固定,同时一个氢原子在碳原子上方靠近碳纳米管。在这种情况下,发现了结合能为-0.8至-0.4 eV的弱束缚态。完全几何弛豫导致SWNT发生强烈变形,削弱了最近的C-C键,并使结合能增加约1 eV。对于(5,5) SWNT的完全氢覆盖,对于GGA泛函,这种金属纳米管转变为带隙为3.4 eV的绝缘体,对于杂化泛函,带隙为4.8 eV。在结合能计算方面,杂化泛函的表现与纯密度泛函理论泛函相似,而带隙则严重依赖于泛函的选择。

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