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Principal molecular axis and transition dipole moment orientations in liquid crystal systems: an assessment based on studies of guest anthraquinone dyes in a nematic host

机译:液晶系统中的主分子轴和跃迁偶极矩方向:基于向列宿主中客体蒽醌染料研究的评估

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摘要

An assessment of five different definitions of the principal molecular axis along which molecules align in a nematic liquid crystal system has been made by analysing fully atomistic molecular dynamics (MD) simulations of a set of anthraquinone dyes in the cyanobiphenyl-based nematic host mixture E7. Principal molecular axes of the dyes defined by minimum moment of inertia, minimum circumference, minimum area, maximum aspect ratio, and surface tensor models were tested, and the surface tensor model was found to give the best description. Analyses of MD simulations of E7 alone showed that the surface tensor model also gave a good description of the principal molecular axes of the host molecules, suggesting that this model may be applicable more generally. Calculated dichroic order parameters of the guest–host systems were obtained by combining the surface tensor analysis with fixed transition dipole moment (TDM) orientations from time-dependent density functional theory (TD-DFT) calculations on optimised structures of the dyes, and the trend between the dyes generally matched the trend in the experimental values. Additional analyses of the guest–host simulations identified the range of conformers explored by the flexible chromophores within the dyes, and TD-DFT calculations on corresponding model structures showed that this flexibility has a significant effect on the TDM orientations within the molecular frames. Calculated dichroic order parameters that included the effects of this flexibility gave a significantly improved match with the experimental values for the more flexible dyes. Overall, the surface tensor model has been shown to provide a rationale for the experimental alignment trends that is based on molecular shape, and molecular flexibility within the chromophores has been shown to be significant for the guest–host systems: the computational approaches reported here may be used as a general aid in the predictive design of dyes with appropriate molecular shapes and flexibilities for guest–host applications.
机译:通过分析基于氰基联苯的向列型宿主混合物E7中一组蒽醌染料的完全原子分子动力学(MD)模拟,对五个主要定义的主分子轴进行了评估,分子在该主分子轴上沿向列液晶系统排列。测试了由最小惯性矩,最小周长,最小面积,最大长宽比和表面张量模型定义的染料的主分子轴,发现表面张量模型给出了最佳描述。仅E7的MD模拟分析表明,表面张量模型也很好地描述了宿主分子的主分子轴,这表明该模型可能更适用。通过将表面张量分析与固定跃迁偶极矩(TDM)取向相结合,从时变密度泛函理论(TD-DFT)计算出染料的最佳结构,并得出趋势,可以得出客体-宿主系统的二向色阶参数染料之间的差异一般符合实验值的趋势。来宾-宿主模拟的其他分析确定了染料中柔性发色团探索的构象异构体范围,并且对相应模型结构的TD-DFT计算表明,这种柔性对分子框架内的TDM取向有重要影响。计算出的包括该柔韧性影响的二色性阶数参数,与更柔韧性的染料的实验值相比,具有明显改善的匹配性。总体而言,表面张量模型已被证明为基于分子形状的实验排列趋势提供了理论依据,并且生色团内的分子柔性已被证明对客体-宿主系统具有重要意义:此处报道的计算方法可能在客体宿主应用中,可以用作具有适当分子形状和柔韧性的染料的预测设计的一般辅助工具。

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