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A novel orientation-dependent potential model for prolate mesogens

机译:新型的取向依赖的潜在模型的长条状介晶

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An intermolecular potential is introduced for the study of molecular mesogenic fluids.The model combines distinct features of the well-known Gay-Berne and Kihara potentials by incorporating dispersive interactions dependent on the relative pair orientation to a spherocylinder molecular core.Results of a Monte Carlo simulation study focused on the liquid crystal phases exhibited by the model fluid are presented.For the chosen potential parameters,molecular aspect ratio L~* = 5 and temperatures T~* = 2,3,and 5,isotropic,nematic,smectic-A,and hexatic phases are found.The location of the phase boundaries as well as the equation of state of the fluid and further thermodynamical and structural parameters are discussed and contrasted to the Kihara fluid.In comparison to this latter fluid,the model induces the formation of ordered liquid crystalline phases at lower packing fractions and it favors,in particular,the appearance of layered hexatic ordering as a consequence of the greater attractive interaction assigned to the parallel side-to-side molecular pair configurations.The results contribute to the evaluation of the role of specific interaction energies in the mesogenic behavior of prolate molecular liquids in dense environments.
机译:引入分子间势来研究分子介晶流体,该模型通过结合依赖于球体分子核的相对对取向的色散相互作用,结合了著名的盖伊-伯恩势和基哈拉势的独特特征。针对模型流体呈现出的液晶相进行了仿真研究。对于所选的电势参数,分子长径比L〜* = 5,温度T〜* = 2,3,5,各向同性,向列,近晶A讨论了相边界的位置以及流体的状态方程,进一步讨论了热力学和结构参数,并将其与Kihara流体进行了对比。与后者相比,该模型可以诱导形成较低填充率的有序液晶相的形成,特别是由于较大的吸光度而有利于出现层状六方晶序相互作用分配给了平行的左右分子对构型。结果有助于评估特定相互作用能在稠密环境下扁桃状分子液体的介晶行为中的作用。

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