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首页> 外文期刊>The Journal of Chemical Physics >Polyelectrolyte adsorption onto like-charged surfaces mediated by trivalent counterions: A Monte Carlo simulation study
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Polyelectrolyte adsorption onto like-charged surfaces mediated by trivalent counterions: A Monte Carlo simulation study

机译:三价抗衡离子介导的聚电解质吸附在带电荷的表面上的蒙特卡洛模拟研究

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Both experiments and theory have evidenced that multivalent cations can mediate the interaction between negatively charged polyelectrolytes and like-charged objects, such as anionic lipoplexes (DNA-cation-anionic liposome complexes). In this paper, we use Monte Carlo simulations to study the electrostatic interaction responsible for the trivalent-counterion-mediated adsorption of polyelectrolytes onto a like-charged planar surface. The evaluation of the Helmholtz free energy allows us to characterize both the magnitude and the range of the interaction as a function of the polyelectrolyte charge, surface charge density, [3:1] electrolyte concentration, and cation size. Both polyelectrolyte and surface charge favor the adsorption. It should be stressed, however, that the adsorption will be negligible if the surface charge density does not exceed a threshold value. The effect of the [3:1] electrolyte concentration has also been analyzed. In certain range of concentrations, the counterion-mediated attraction seems to be independent of this parameter, whereas very high concentrations of salt weaken the adsorption. If the trivalent cation diameter is doubled the adsorption moderates due to the excluded volume effects. The analysis of the integrated charge density and ionic distributions suggests that a delicate balance between charge inversion and screening effects governs the polyelectrolyte adsorption onto like-charged surfaces mediated by trivalent cations.
机译:实验和理论都证明,多价阳离子可以介导带负电的聚电解质与类似电荷的物体(如阴离子脂质复合物(DNA-阳离子-阴离子脂质体复合物))之间的相互作用。在本文中,我们使用蒙特卡洛模拟研究静电相互作用,该相互作用导致三价抗衡离子介导的聚电解质吸附在带电的平坦表面上。亥姆霍兹自由能的评估使我们能够表征相互作用的幅度和范围,它们是聚电解质电荷,表面电荷密度,[3:1]电解质浓度和阳离子尺寸的函数。聚电解质和表面电荷都有利于吸附。然而,应该强调的是,如果表面电荷密度不超过阈值,则吸附可以忽略不计。还分析了[3:1]电解质浓度的影响。在一定浓度范围内,抗衡离子介导的吸引力似乎与该参数无关,而非常高的盐浓度会削弱吸附。如果三价阳离子直径增加一倍,则由于排除了体积效应,吸附速度将变慢。积分电荷密度和离子分布的综合分析表明,电荷转化和屏蔽效应之间的微妙平衡决定了聚电解质在三价阳离子介导的带相同电荷的表面上的吸附作用。

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