首页> 外文期刊>International Journal of Molecular Sciences >Liquid Crystal Phase Behaviour of Attractive Disc-Like Particles
【24h】

Liquid Crystal Phase Behaviour of Attractive Disc-Like Particles

机译:有吸引力的盘状颗粒的液晶相行为

获取原文
           

摘要

We employ a generalized van der Waals-Onsager perturbation theory to construct a free energy functional capable of describing the thermodynamic properties and orientational order of the isotropic and nematic phases of attractive disc particles. The model mesogen is a hard (purely repulsive) cylindrical disc particle decorated with an anisotropic square-well attractive potential placed at the centre of mass. Even for isotropic attractive interactions, the resulting overall inter-particle potential is anisotropic, due to the orientation-dependent excluded volume of the underlying hard core. An algebraic equation of state for attractive disc particles is developed by adopting the Onsager trial function to characterize the orientational order in the nematic phase. The theory is then used to represent the fluid-phase behaviour (vapour-liquid, isotropic-nematic, and nematic-nematic) of the oblate attractive particles for varying values of the molecular aspect ratio and parameters of the attractive potential. When compared to the phase diagram of their athermal analogues, it is seen that the addition of an attractive interaction facilitates the formation of orientationally-ordered phases. Most interestingly, for certain aspect ratios, a coexistence between two anisotropic nematic phases is exhibited by the attractive disc-like fluids.
机译:我们采用广义范德瓦尔斯-昂萨格微扰理论来构建能够描述有吸引力的盘状粒子各向同性和向列相的热力学性质和取向顺序的自由能函数。液晶元模型是坚硬的(纯排斥性的)圆柱形圆盘颗粒,其装饰有位于质心的各向异性方阱引力。即使对于各向同性的有吸引力的相互作用,由于下面的硬核的定向相关的排除体积,所得的整体粒子间电势也是各向异性的。通过采用Onsager试用函数来表征向列相的取向顺序,得出了有吸引力的圆盘颗粒的代数状态方程。然后,该理论用于表示扁桃体吸引颗粒的液相行为(蒸气-液体,各向同性向列和向列向列),以改变分子纵横比的值和吸引势的参数。当与它们的无热类似物的相图进行比较时,可以看出,有吸引力的相互作用的加入促进了取向有序相的形成。最有趣的是,对于某些纵横比,有吸引力的盘状流体表现出两个各向异性向列相之间的共存。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号