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首页> 外文期刊>The Journal of Chemical Physics >Mobius and twisted graphene nanoribbons: Stability, geometry, and electronic properties
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Mobius and twisted graphene nanoribbons: Stability, geometry, and electronic properties

机译:Mobius和扭曲的石墨烯纳米带:稳定性,几何形状和电子特性

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摘要

Results of classical force field geometry optimizations for twisted graphene nanoribbons with a number of twists N-t varying from 0 to 7 (the case N-t=1 corresponds to a half-twist Mobius nanoribbon) are presented in this work. Their structural stability was investigated using the Brenner reactive force field. The best classical molecular geometries were used as input for semiempirical calculations, from which the electronic properties (energy levels, HOMO, LUMO orbitals) were computed for each structure. CI wavefunctions were also calculated in the complete active space framework taking into account eigenstates from HOMO-4 to LUMO+4, as well as the oscillator strengths corresponding to the first optical transitions in the UV-VIS range. The lowest energy molecules were found less symmetric than initial configurations, and the HOMO-LUMO energy gaps are larger than the value found for the nanographene used to build them due to electronic localization effects created by the twisting. A high number of twists leads to a sharp increase of the HOMO -> LUMO transition energy. We suggest that some twisted nanoribbons could form crystals stabilized by dipolar interactions. (c) 2008 American Institute of Physics.
机译:在这项工作中,提出了扭曲数为N-t从0到7(情况N-t = 1对应于半扭曲Mobius纳米带)的扭曲石墨烯纳米带的经典力场几何优化结果。使用布伦纳反作用力场研究了它们的结构稳定性。最佳经典分子几何结构用作半经验计算的输入,从中可以计算出每个结构的电子性质(能级,HOMO,LUMO轨道)。还考虑了从HOMO-4到LUMO + 4的本征态,以及对应于UV-VIS范围内第一个光学跃迁的振荡器强度,在完整的活动空间框架中计算了CI波函数。发现最低的能量分子不如初始构型对称,并且由于扭曲产生的电子定位效应,HOMO-LUMO的能隙大于用于构建它们的纳米石墨烯的值。大量的扭曲会导致HOMO-> LUMO跃迁能急剧增加。我们建议一些扭曲的纳米带可以形成通过偶极相互作用稳定的晶体。 (c)2008年美国物理研究所。

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