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Theoretical Investigation on PEDOT Polymeric Chain Structure through Dimeric Rotational Barrier

机译:二聚体旋转阻挡层对PEDOT聚合物链结构的理论研究

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摘要

Organic semiconductors have unique molecular properties that hardly ever are found in biochemical macromolecules, as charge transport and planarity of polymeric chain. The first step to understand these properties is based on reliable geometric description of these systems, where semi-empirical methodologies can provide good geometric results with low computational cost. In this study, PEDOT dimer rotational barrier was investigated by three semi-empirical methodologies (PM6, PM7 and RM1) and B3LYP/6-31+G(d,p) DFT level of theory, comparing with experimental results for bond length, dihedral angle and band-gap energy. The results show better description by DFT methodology for PEDOT dimer bond length and band-gap energy, while PM6 methodology provides better long range description, especially dihedral angle, indicating that this methodology can be used for predict geometric parameters of organic semiconductor polymeric chain.
机译:有机半导体具有独特的分子特性,如电荷传输和聚合物链的平面性,这在生化大分子中几乎找不到。理解这些特性的第一步是基于这些系统的可靠几何描述,其中半经验方法可以以较低的计算成本提供良好的几何结果。在这项研究中,通过三种半经验方法(PM6,PM7和RM1)和B3LYP / 6-31 + G(d,p)DFT理论水平研究了PEDOT二聚体旋转势垒,并与键长,二面体的实验结果进行了比较角和带隙能量。结果表明,通过DFT方法可以更好地描述PEDOT二聚体键长和带隙能量,而PM6方法可以提供更好的长距离描述,尤其是二面角,这表明该方法可用于预测有机半导体聚合物链的几何参数。

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