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Effective interaction in asymmetric charged binary mixtures: The non-monotonic behaviour with the colloidal charge

机译:在不对称带电二元混合物中的有效相互作用:胶体电荷的非单调行为

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In this work we study the effective force between charged spherical colloids induced by the presence of smaller charged spheres using Monte Carlo simulations. The analysis is performed for two size ratios, q = R _s/R_b, two screened direct repulsions, κ, and two small particle packing fractions, Φ_s. We specially focus on the effect of the charge of the big colloids (Z_b), and observe that the repulsion between big particles shows a non-monotonic behaviour: for sufficiently small charge, we find an anomalous regime where the total repulsion weakens by increasing the big colloid charge. For larger charges, the system recovers the usual behaviour and the big-big interaction becomes more repulsive increasing Z_b. This effect is linked to the existence of strong attractive depletion interactions caused by the small-big electrostatic repulsion. We have also calculated the effective force using the Ornstein-Zernike equation with the HNC closure. In general, this theory agrees with the simulation results, and is able to capture this non-monotonic behaviour.
机译:在这项工作中,我们使用蒙特卡洛模拟研究由较小的带电球体引起的带电球体胶体之间的有效力。针对两个尺寸比q = R _s / R_b,两个筛选的直接排斥力κ和两个小颗粒堆积分数Φ_s进行分析。我们特别关注大胶体(Z_b)的电荷效应,并观察到大颗粒之间的排斥表现出非单调行为:对于足够小的电荷,我们发现一个反常状态,其中总排斥力通过增加电荷而减弱大胶体电荷。对于较大的电荷,系统将恢复通常的行为,并且大大小小的交互作用会变得越来越排斥Z_b。该效应与由小-大静电排斥力引起的强吸引力耗尽相互作用的存在有关。我们还使用带有HNC闭合的Ornstein-Zernike方程计算了有效力。通常,该理论与仿真结果一致,并且能够捕获这种非单调的行为。

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