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Potential of mean force between oppositely charged nanoparticles: A comprehensive comparison between Poisson–Boltzmann theory and Monte Carlo simulations

机译:带相反电荷的纳米粒子之间的平均力的潜力:泊松-玻尔兹曼理论和蒙特卡洛模拟的全面比较

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摘要

Ion-mediated interactions between like-charged polyelectrolytes have been paid much attention, and the Poisson–Boltzmann (PB) theory has been shown to fail in qualitatively predicting multivalent ion-mediated like-charge attraction. However, inadequate attention has been paid to the ion-mediated interactions between oppositely charged polyelectrolytes. In this work, the potentials of mean force (PMF) between oppositely charged nanoparticles in 1:1 and 2:2 salt solutions were investigated by Monte Carlo simulations and the PB theory. Our calculations show that the PMFs between oppositely charged nanoparticles are generally attractive in 1:1 and 2:2 salt solutions and that such attractive PMFs become weaker at higher 1:1 or 2:2 salt concentrations. The comprehensive comparisons show that the PB theory can quantitatively predict the PMFs between oppositely charged nanoparticles in 1:1 salt solutions, except for the slight deviation at very high 1:1 salt concentration. However, for 2:2 salt solutions, the PB theory generally overestimates the attractive PMF between oppositely charged nanoparticles, and this overestimation becomes more pronounced for nanoparticles with higher charge density and for higher 2:2 salt concentration. Our microscopic analyses suggest that the overestimation of the PB theory on the attractive PMFs for 2:2 salt solutions is attributed to the underestimation of divalent ions bound to nanoparticles.
机译:荷电类似的聚电解质之间的离子介导相互作用已经引起了广泛关注,并且泊松-玻耳兹曼(PB)理论已被证明无法定性地预测多价离子介导的荷电。然而,对带相反电荷的聚电解质之间的离子介导的相互作用没有给予足够的重视。在这项工作中,通过蒙特卡洛模拟和PB理论研究了在1:1和2:2盐溶液中带相反电荷的纳米粒子之间的平均力(PMF)的潜力。我们的计算表明,带相反电荷的纳米粒子之间的PMF在1:1和2:2盐溶液中通常具有吸引力,并且在1:1或2:2较高的盐浓度下,这种有吸引力的PMF变得更弱。全面的比较表明,PB理论可以定量预测1:1盐溶液中带相反电荷的纳米粒子之间的PMF,除了在非常高的1:1盐浓度下会有微小偏差。但是,对于2:2的盐溶液,PB理论通常会高估带相反电荷的纳米颗粒之间的吸引力PMF,而对于电荷密度更高和2:2的盐浓度更高的纳米颗粒,这种高估会变得更加明显。我们的微观分析表明,对于2:2盐溶液,有吸引力的PMF对PB理论的高估归因于与纳米颗粒结合的二价离子的低估。

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