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Computer Simulations of Static and Dynamical Properties of Weak Polyelectrolyte Nanogels in Salty Solutions

机译:咸溶液中弱聚电解质纳米凝胶静态和动态性质的计算机模拟

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We investigate the chemical equilibria of weak polyelectrolyte nanogels with reaction ensemble Monte Carlo simulations. With this method, the chemical identity of the nanogel monomers can change between neutral or charged following the acid-base equilibrium reaction HA ? A ? + H + . We investigate the effect of changing the chemical equilibria by modifying the dissociation constant K a . These simulations allow for the extraction of static properties like swelling equilibria and the way in which charge—both monomer and ionic—is distributed inside the nanogel. Our findings reveal that, depending on the value of K a , added salt can either increase or decrease the gel size. Using the calculated mean-charge configurations of the nanogel from the reaction ensemble simulation as a quenched input to coupled lattice-Boltzmann molecular dynamics simulations, we investigate dynamical nanogel properties such as the electrophoretic mobility μ and the diffusion coefficient D .
机译:我们用反应集合蒙特卡罗模拟研究弱聚电解质纳米凝胶的化学平衡。用这种方法,纳米凝胶单体的化学特性可以在酸碱平衡反应之后在中性或带电之间变化。一种 ? + H +。我们研究了通过改变解离常数K a来改变化学平衡的影响。这些模拟可以提取诸如溶胀平衡之类的静态特性,以及电荷(单体和离子)在纳米凝胶内部的分布方式。我们的发现表明,根据K a的值,添加盐可以增加或减小凝胶大小。使用从反应集成模拟计算得到的纳米凝胶的平均电荷构型作为耦合晶格-玻尔兹曼分子动力学模拟的猝灭输入,我们研究了动力学纳米凝胶的性质,例如电泳迁移率μ和扩散系数D。

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