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Exploring the structural and electronic properties of nitrogen-containing exohydrogenated carbon nanotubes: A quantum chemistry study

机译:探索含氮外加氢碳纳米管的结构和电子性质:量子化学研究

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摘要

Saturated nanotubes consisting of 2-10 and 20 layers of cyclic units of six-membered rings, each one having a pyrimidine-like framework (i. e., -C-C-C-N-C-N-), were studied by quantum chemistry methods using Density Functional Theory (DFT) at the B3LYP/6-31G* level of theory. Four different nanotube (NT) configurations were theoretically studied in this work. They were formed by covalently arranging each layer over the other, with uniform relative rotations of 0°, 60°, 120°, and 180° with respect to each of the layers. Different structures can be created by modulating the relative rotation as layers are added to the main nanostructure. NTs with a relative rotation of 60° showed both greater stabilities and highest potential for catalytic activity. All of them showed band gaps of around 0.2 eV. Charges and other properties can be controlled by appropriate layer arrangement. The studied families of NTs have a very small diameter and could find potential applications in chemistry, physics, and medicine.
机译:在2000年代,利用密度泛函理论(DFT)通过量子化学方法研究了由2-10个环和20个六元环的环状单元层组成的饱和纳米管,每个环具有嘧啶样骨架(即-CCCNCN-)。 B3LYP / 6-31G *理论水平。在这项工作中,理论上研究了四种不同的纳米管(NT)构型。它们是通过将每一层共价排列在另一层上而形成的,相对于每一层,它们具有0°,60°,120°和180°的均匀相对旋转。当将层添加到主纳米结构时,可以通过调节相对旋转来创建不同的结构。相对旋转60°的NTs表现出更高的稳定性和最高的催化活性潜力。它们全部显示出约0.2eV的带隙。电荷和其他性质可以通过适当的层布置来控制。所研究的NT家族直径非常小,可以在化学,物理和医学中找到潜在的应用。

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