首页> 美国卫生研究院文献>IUCrJ >Charge-transport properties of 4-(122-tri­phenyl­vinyl)­aniline salicylaldehyde hydrazone: tight-packing induced molecular ‘hardening’
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Charge-transport properties of 4-(122-tri­phenyl­vinyl)­aniline salicylaldehyde hydrazone: tight-packing induced molecular ‘hardening’

机译:4-(122-三­苯基­乙烯基)­苯胺水杨醛的电荷输运性质:紧密堆积诱导分子硬化

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摘要

Based on first-principles calculations, the relationship between molecular packing and charge-transport parameters has been investigated and analysed in detail. It is found that the crystal packing forces in the flexible organic molecule 4-(1,2,2-triphenylvinyl)­aniline salicylaldehyde hydrazone (A) can apparently overcome the dynamic intramolecular rotations and the intramolecular steric repulsion, effectively enhancing the molecular rigidity and decreasing the internal reorganization energy. The conducting properties of A have also been simulated within the framework of hopping models, and the calculation results show that the intrinsic electron mobility in A is much higher than the corresponding intrinsic hole mobility. These theoretical investigations provide guidance for the efficient and targeted control of the molecular packing and charge-transport properties of organic small-molecule semiconductors and conjugated polymeric materials.
机译:在第一性原理计算的基础上,详细研究和分析了分子堆积与电荷传输参数之间的关系。发现柔性有机分子4-(1,2,2-三苯基乙烯基)苯胺水杨醛(A)中的晶体堆积力可以明显克服分子内的动态旋转和分子内的斥力,有效地增强了分子的刚性并降低了内部重组的能量。在跳变模型的框架内,还模拟了A的导电特性,计算结果表明A的本征电子迁移率远高于相应的本征空穴迁移率。这些理论研究为有机小分子半导体和共轭聚合物材料的分子堆积和电荷传输性质的有效和有针对性的控制提供了指导。

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