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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Theoretical discussions on electron transport properties of perylene bisimide derivatives with different molecular packings and intermolecular interactions
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Theoretical discussions on electron transport properties of perylene bisimide derivatives with different molecular packings and intermolecular interactions

机译:不同分子堆积和分子间相互作用的per双酰亚胺衍生物电子输运性质的理论讨论

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Seven perylene bisimide derivatives with different molecular packings and intermolecular interactions were investigated in detail within Marcus-Levich-Jortner formalism at the level of density functional theory (DFT). In theory, we further proved the report that different halogen substitutions in the core position of perylene bisimide lead to different molecular packings in their single crystals and thus obviously different electron transport properties. Here, insight into the geometries, the character of the frontier molecular orbitals, the decompositions of reorganization energies and transfer integrals in different directions was provided to shed light on the relationship between structures and properties. The molecular dynamics (MD) simulations and band structures calculations were also employed to give a multiscale understanding of their transport properties. The results show that there are small discrepancies of the intramolecular electron reorganization energies among these compounds and the transfer integrals determine their electron "transport properties. Compounds 1a, 3a and 3b, with typical "brick" packing, π-stacked face-to-face packing and "herringbone" packing, respectively, have larger electron mobilities among these systems and possess different transport dimensionalities. Moreover, we also find there is close relationship between the intermolecular interaction energy and the transfer integral.
机译:在Marcus-Levich-Jortner形式主义中以密度泛函理论(DFT)的水平详细研究了七个具有不同分子堆积和分子间相互作用的per二酰亚胺衍生物。从理论上讲,我们进一步证明了该报道:per双酰亚胺的核心位置上不同的卤素取代导致其单晶中的分子堆积不同,因此电子传输性能也明显不同。在这里,我们提供了对几何形状,前沿分子轨道的特征,重组能的分解以及不同方向上的转移积分的深入了解,以阐明结构与性质之间的关系。分子动力学(MD)模拟和能带结构计算也被用来对它们的传输特性进行多尺度的理解。结果表明,这些化合物之间的分子内电子重组能差异很小,并且转移积分决定了它们的电子“传输性质”。化合物1a,3a和3b具有典型的“砖”堆积,面对面堆积π填料和“人字”填料在这些体系中分别具有较大的电子迁移率和不同的传输维数,而且,我们还发现分子间相互作用能与转移积分之间存在密切关系。

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