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A hybrid model for molecular-dynamics simulations of semiflexible main-chain liquid-crystalline polymer melts

机译:半柔性主链液晶聚合物熔体分子动力学模拟的混合模型

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摘要

This Note proposes a new hybrid model that combines the Gay-Berne/Lennard-Jones (GB/LJ) and bead-spring models to simulate semiflexible main-chain liquid-crystalline polymers (LCPs) for improving simulation efficiency without compromising accuracy. In the new model, one bead and two nonlinear springs are used to describe the flexible spacers between two adjacent rigid units described by ellipsoidal particles. The model is found to be able to describe, with accuracy, detailed structural properties of semiflexible main-chain LCPs, such as the odd-even effects of their thermodynamic properties, where the bead-spring model cannot depict. In our experiments, the speed of simulation for the hybrid model was shown to be up to ten times faster than that for the GB/LJ model when the number of molecular chains exceeded 150.
机译:本说明提出了一种新的混合模型,该模型结合了Gay-Berne / Lennard-Jones(GB / LJ)模型和微珠弹簧模型,可以模拟半柔性主链液晶聚合物(LCP),从而在不降低精度的情况下提高模拟效率。在新模型中,一个珠子和两个非线性弹簧用于描述两个相邻的由椭圆形粒子描述的刚性单元之间的柔性垫片。发现该模型能够准确地描述半柔性主链LCP的详细结构特性,例如其热力学特性的奇偶效应,而珠状弹簧模型无法描述。在我们的实验中,当分子链数超过150时,混合模型的仿真速度显示出比GB / LJ模型快10倍。

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