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Size and chain length effects on structural behaviors of biphenylcyclohexane-based liquid crystal nanoclusters by a coarse-grained model

机译:粗粒度模型对尺寸和链长对联苯环己烷基液晶纳米团簇结构行为的影响

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Size and chain length effects on structural behaviors of liquid crystal nanoclusters were examined by a coarse-grained model and the configurational-bias Monte Carlo (CBMC) simulation. The nanoclusters investigated in this study are composed of the biphenylcyclohexane-based BCH5H liquid crystal molecule and its derivatives. Results of the study show that the average energy decreases (i.e., more negative) as the cluster size (i.e., the number of molecules) increases. With the increasing cluster size, the equilibrium conformation of the nanocluster changes gradually from a pipe-like structure (for the smaller systems) to a ball-like cluster (for the larger systems). The order parameter of the system reduces with the transition of the equilibrium conformation. Regarding the chain length effect, the pipe-like equilibrium conformation (for the smaller systems) was observed more close to a pipe as the length of the tail alkyl chain of the derivatives extended. However, due to the flexibility of the tail alkyl chain, the pipe conformation of the system deflects slightly about its cyclohexyl group as the tail extends further.
机译:大小和链长对液晶纳米团簇的结构行为的影响通过粗粒度模型和配置偏向蒙特卡罗(CBMC)模拟进行了检验。本研究中研究的纳米簇由基于联苯环己烷的BCH5H液晶分子及其衍生物组成。研究结果表明,平均能量随团簇大小(即分子数)的增加而降低(即,更负)。随着簇大小的增加,纳米簇的平衡构象逐渐从管状结构(对于较小的系统)变为球形簇(对于较大的系统)。系统的阶数参数随着平衡构象的转变而降低。关于链长效应,观察到管状的平衡构象(对于较小的系统)随着衍生物的末端烷基链的长度延长而更接近于管道。然而,由于末端烷基链的柔性,当末端进一步延伸时,系统的管构型围绕其环己基略微偏斜。

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