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Molecular structure of the discotic liquid crystalline phase of hexa-peri-hexabenzocoronene/oligothiophene hybrid and their charge transport properties

机译:六-peri-六苯并二茂铁/低聚噻吩杂化体的盘状液晶相的分子结构及其电荷传输性质

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摘要

Using atomistic molecular dynamics simulation, we study the discotic columnar liquid crystalline (LC) phases formed by a new organic compound having hexa-peri-Hexabenzocoronene (HBC) core with six pendant oligothiophene units recently synthesized by Nan Hu et al. Adv. Mater. 26, 2066 (2014)]. This HBC core based LC phase was shown to have electric field responsive behavior and has important applications in organic electronics. Our simulation results confirm the hexagonal arrangement of columnar LC phase with a lattice spacing consistent with that obtained from small angle X-ray diffraction data. We have also calculated various positional and orientational correlation functions to characterize the ordering of the molecules in the columnar arrangement. The molecules in a column are arranged with an average twist of 25 degrees having an average inter-molecular separation of similar to 5 angstrom. Interestingly, we find an overall tilt angle of 43 degrees between the columnar axis and HBC core. We also simulate the charge transport through this columnar phase and report the numerical value of charge carrier mobility for this liquid crystal phase. The charge carrier mobility is strongly influenced by the twist angle and average spacing of the molecules in the column. (C) 2015 AIP Publishing LLC.
机译:使用原子分子动力学模拟,我们研究了由新的有机化合物形成的盘状柱状液晶(LC)相,该有机化合物具有六环己六并苯并(HBC)核和由Nan Hu等人最近合成的六个侧基低聚噻吩单元。进阶母校26,2066(2014)]。这种基于HBC核的LC相具有电场响应特性,在有机电子领域具有重要的应用。我们的模拟结果证实了柱状LC相的六边形排列,其晶格间距与从小角度X射线衍射数据获得的晶格间距一致。我们还计算了各种位置和方向相关函数,以表征柱状排列中分子的顺序。列中的分子以25度的平均扭曲排列,平均分子间间隔类似于5埃。有趣的是,我们发现柱状轴和HBC核心之间的整体倾斜角为43度。我们还模拟了通过此柱状相的电荷传输,并报告了该液晶相的载流子迁移率数值。电荷载流子迁移率受柱中分子的扭曲角和平均间距的强烈影响。 (C)2015 AIP Publishing LLC。

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