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首页> 外文期刊>The Journal of Chemical Physics >A Brownian dynamics study on the self-diffusion of charged tracers in dilute polyelectrolyte solutions
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A Brownian dynamics study on the self-diffusion of charged tracers in dilute polyelectrolyte solutions

机译:带电示踪剂在稀聚电解质溶液中自扩散的布朗动力学研究

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摘要

Brownian dynamics simulations with hydrodynamic interactions are conducted to investigate the self-diffusion of charged tracer particles in a dilute solution of charged polymers,which are modeled by bead-spring chains.The Debye-Huckel approximation is used for the electrostatic interactions.The hydrodynamic interactions are implemented by the Ewald summation of the Rotne-Prager tensor.Our simulations find that the difference in short-and long-time diffusivities is very slight in uncharged short-chain solutions.For charged systems,to the contrary,the difference becomes considerable.The short-time diffusivity is found to increase with increasing chain length,while an opposite behavior is obtained for the long-time diffusivity.The former is attributed to the hydrodynamic screening among beads in a same chain due to the bead connectivity.The latter is explained by the memory effect arising from the electrostatic repulsion and chain length.The incorporation of hydrodynamic interactions improves the agreement between the simulation prediction and the experimental result.
机译:进行了带有水动力相互作用的布朗动力学模拟,以研究带电聚合物的稀溶液中带电示踪剂粒子的自扩散,该溶液由微珠-弹簧链建模。静电相互作用采用Debye-Huckel近似法。我们的仿真发现,在不带电的短链解中,短时和长时间扩散率的差异很小。对于带电系统,该差异变得相当大。发现短时扩散系数随链长的增加而增加,而长时扩散系数则表现出相反的行为。前者归因于在同一链中的珠之间的流体动力学筛选,这是由于珠的连通性所引起的。用静电排斥和链长引起的记忆效应来解释。在模拟预测和实验结果之间保持一致。

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