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首页> 外文期刊>The Journal of Chemical Physics >A versatile simulation method for studying phase behavior and dynamics in colloidal rod and rod-polymer suspensions
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A versatile simulation method for studying phase behavior and dynamics in colloidal rod and rod-polymer suspensions

机译:用于研究胶体棒和棒聚合物悬架中相位行为和动力学的多功能仿真方法

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摘要

Here, we present an implicit-solvent model for dynamic simulations of hard-rod and rod-polymer suspensions. Individual rods are represented by a rigid linear chain consisting of overlapping spheres which interact through a pseudohard-core potential based on the cut-and-shifted Mie (generalized Lennard-Jones) potential with exponents (50, 49). In the rod-polymer suspensions, the polymers are modeled as freely interpenetrable spheres with respect to each other, while there is the pseudohard-core repulsion between the polymer and rod spheres. Dynamic simulations with this model are carried out with a dissipative particle dynamics (DPD) thermostat-each sphere is put in a larger DPD sphere and thus interacts with others via additional pairwise frictional and random forces-which captures the effects of Brownian forces due to the solvent while conserving local momentum. The phase behavior of these models, obtained from continuous compression and expansion simulations, reproduces previous predictions based on theoretical calculations and Monte Carlo simulations. Our method is suited to study dynamic processes in these suspensions, including nucleation and self-assembly, and can be readily extended to colloidal particles of different shapes and chemistry. Published under license by AIP Publishing.
机译:这里,我们提出了一种用于硬杆和棒聚合物悬浮液的动态模拟的隐含溶剂模型。单个杆由刚性线性链表示,该刚性线性链包括通过基于具有指数(50,49)的切割和移位的mie(广义Lennard-jones)电位而通过伪岩石核心电位相互作用(50,49)。在棒聚合物悬浮液中,聚合物被彼此自由地互连球体,而聚合物和杆球之间存在伪岩石核心排斥。具有该模型的动态模拟与耗散粒子动力学(DPD)恒温器 - 每个球体放入较大的DPD球体中,从而通过额外的一对摩擦和随机力与他人相互作用 - 这捕获了褐色力量的影响溶剂,同时保存当地的势头。从连续压缩和扩展模拟中获得的这些模型的相位行为,基于理论计算和蒙特卡罗模拟再现先前的预测。我们的方法适于研究这些悬浮液中的动态过程,包括成核和自组装,并且可以容易地扩展到不同形状和化学的胶体颗粒。通过AIP发布在许可证下发布。

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