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Thermo-molecular orientation effects in fluids of dipolar dumbbells

机译:偶极哑铃流体中的热分子取向效应

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We use molecular dynamics simulations in applied thermal gradients to study thermomolecular orientation (TMO) of size-asymmetric dipolar dumbbells with different molecular dipole moments. We find that the direction of the TMO is the same as in apolar dumbbells of the same size, i.e. the smaller atom in the dumbbell tends to orient towards the colder temperature. The ratio of the electrical polarization to the magnitude of the thermal gradient does not vary much with the magnitude of the molecular dipole moment. We also investigate a novel second order TMO that persists even in size-symmetric dipolar dumbbells where molecules have a slight tendency to orient perpendicular to the gradient except very close to the hot region, where (anti-)parallel orientations are preferred. Finally, we investigate rotational correlation functions and characteristic rotational times in these systems in an attempt to model possible spectroscopic signatures of TMO in experiments. Although we cannot detect any difference in integrated rotational times between equilibrium simulations and simulations in a thermal gradient, more careful modelling of the anisotropic rotational dynamics in the thermal gradient may be more successful.
机译:我们使用施加的热梯度中的分子动力学模拟,研究具有不同分子偶极矩的尺寸不对称的双极哑铃的热分子取向(TMO)。我们发现TMO的方向与相同尺寸的Apolar哑铃中的方向相同,即哑铃中的较小原子倾向于定向达到较冷的温度。电偏振与热梯度幅度的比率与分子偶极矩的大小不变化。我们还研究了一种新的二阶TMO,即使在尺寸对称的双极哑铃中仍然存在,其中分子在除了非常接近热区域之外,分子垂直于梯度定向的倾向,其中(抗议)并行取向是优选的。最后,我们研究了这些系统中的旋转相关函数和特征转速时间,试图在实验中模拟TMO的可能的光谱签名。虽然我们无法检测到在热梯度中的平衡模拟和模拟之间的集成旋转时间内的任何差异,但是在热梯度中的各向异性旋转动态的更仔细建模可能更成功。

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