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Electronic and charge transport properties of dimers of dithienothiophenes: effect of structural symmetry and linking mode

机译:二噻吩并噻吩二聚体的电子和电荷传输性质:结构对称性和连接方式的影响

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摘要

The electronic structures and charge transport properties of a series of dimers of dithienothiophenes are investigated by means of quantum chemical calculations. To gain a better understanding of the effects of the structural symmetry and linking mode on the dimers, the geometrical structures, molecular reorganization energies upon gaining or losing electrons, molecular ionization potentials (IPs) and electron affinities (EAs), molecular aromaticities, frontier molecular orbitals, as well as charge mobilities are analyzed in detail to determine the structure-property relationships for the investigated dimers of dithienothiophenes. The calculated results show that the vinylene-linked dimers have advantages over the directly single-bond linked dimers because of the large extent of pi conjugation and thus enhanced pi-pi stacking interactions in their crystal structures. The molecular symmetry could affect the electron density distributions in the molecules, and further determine the molecular orientations and intermolecular arrangements. High molecular symmetry could facilitate the molecular packing in order, thus enhancing the charge transport. The theoretical characterization of these dimers in combination with experimental results indicate that highly symmetrical vinylene-bridged dimers could be promising candidates for transistor applications, and shed light on the molecular design of high performance materials.
机译:通过量子化学计算研究了一系列二噻吩并噻吩二聚体的电子结构和电荷传输性质。为了更好地理解结构对称性和连接方式对二聚体,几何结构,获得或失去电子时的分子重组能,分子电离势(IP)和电子亲和力(EA),分子芳香性,前沿分子的影响详细分析了轨道和电荷迁移率,以确定所研究的二噻吩并噻吩二聚体的结构-性质关系。计算结果表明,亚乙烯基连接的二聚体比直接单键连接的二聚体具有优势,因为其pi共轭程度很大,因此在其晶体结构中增强了pi-pi堆积相互作用。分子对称性可能影响分子中的电子密度分布,并进一步确定分子取向和分子间排列。较高的分子对称性可以促进分子的堆积,从而增强电荷传输。这些二聚体的理论表征与实验结果表明,高度对称的亚乙烯基桥接的二聚体可能成为晶体管应用的有前途的候选者,并为高性能材料的分子设计提供了启示。

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