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A semi-grand canonical Monte Carlo simulation model for ion binding to ionizable surfaces: Proton binding of carboxylated latex particles as a case study

机译:离子与可电离表面结合的半盛大经典蒙特卡洛模拟模型:案例研究羧化胶乳粒子的质子结合

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In this paper, we present a computer simulation study of the ion binding process at an ionizable surface using a semi-grand canonical Monte Carlo method that models the surface as a discrete distribution of charged and neutral functional groups in equilibrium with explicit ions modelled in the context of the primitive model. The parameters of the simulation model were tuned and checked by comparison with experimental titrations of carboxylated latex particles in the presence of different ionic strengths of monovalent ions. The titration of these particles was analysed by calculating the degree of dissociation of the latex functional groups vs. pH curves at different background salt concentrations. As the charge of the titrated surface changes during the simulation, a procedure to keep the electroneutrality of the system is required. Here, two approaches are used with the choice depending on the ion selected to maintain electroneutrality: counterion or coion procedures. We compare and discuss the difference between the procedures. The simulations also provided a microscopic description of the electrostatic double layer (EDL) structure as a function of pH and ionic strength. The results allow us to quantify the effect of the size of the background salt ions and of the surface functional groups on the degree of dissociation. The non-homogeneous structure of the EDL was revealed by plotting the counterion density profiles around charged and neutral surface functional groups.
机译:在本文中,我们使用半大型经典蒙特卡洛方法对可电离表面上的离子结合过程进行了计算机模拟研究,该模型将表面建模为带电和中性官能团的离散分布,其中平衡的带电离子和中性官能团与在模型中建模的显性离子相平衡。原始模型的上下文。在存在不同一价离子离子强度的情况下,通过与羧化乳胶颗粒的实验滴定进行比较,对仿真模型的参数进行了调整和检查。通过计算在不同背景盐浓度下乳胶官能团的解离度与pH曲线的关系,分析了这些颗粒的滴定度。在模拟过程中,随着滴定表面电荷的变化,需要一种程序来保持系统的电子中性。在此,根据选择用来维持电子中性的离子,可以选择两种方法:抗衡离子或or离子程序。我们比较并讨论程序之间的区别。模拟还提供了静电双层(EDL)结构随pH和离子强度变化的微观描述。结果使我们能够量化背景盐离子的大小和表面官能团对解离度的影响。通过绘制带电和中性表面官能团周围的抗衡离子密度分布图,可以揭示EDL的非均质结构。

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