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Charged nanorods at heterogeneously charged surfaces

机译:在非均相带电表面的带电纳米棒

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We study the spatial and orientational distribution of charged nanorods (rodlike counterions) as well as the effective interaction mediated by them between two plane-parallel surfaces that carry fixed (quenched) heterogeneous charge distributions. The nanorods are assumed to have an internal charge distribution, specified by a multivalent monopolar moment and a finite quadrupolar moment, and the quenched surface charge is assumed to be randomly distributed with equal mean and variance on the two surfaces. While equally charged surfaces are known to repel within the traditional mean-field theories, the presence of multivalent counterions has been shown to cause attractive interactions between uniformly charged surfaces due to the prevalence of strong electrostatic couplings that grow rapidly with the counterion valency. We show that the combined effects due to electrostatic correlations (caused by the coupling between the mean surface field and the multivalent, monopolar, charge valency of counterions) as well as the disorder-induced interactions (caused by the coupling between the surface disorder field and the quadrupolar moment of counterions) lead to much stronger attractive interactions between two randomly charged surfaces. The interaction profile turns out to be a nonmonotonic function of the intersurface separation, displaying an attractive minimum at relatively small separations, where the ensuing attraction can exceed the maximum strong-coupling attraction (produced by multivalent monopolar counterions between uniformly charged surfaces) by more than an order of magnitude. Published by AIP Publishing.
机译:我们研究带电纳米棒(杆状抗衡离子)的空间和取向分布以及它们在承载固定(淬火)异质电荷分布的两个平面平行表面之间的有效相互作用。假设纳米棒具有由多价单极矩和有限的四极矩指定的内部电荷分布,并且假设淬火表面电荷随机分布在两个表面上具有相等的平均值和方差。虽然已知在传统的平均场地理论内被众所周知的表面被拒绝,但由于具有迅速与抗衡静值快速增长的强烈静电联轴器的流行,因此已经显示了多价抗衡离子之间的存在均匀的相互作用。我们表明,由于静电相关性(由平均表面场和多价,单极,抗衡率之间的耦合而引起的耦合而引起的综合效果以及紊乱诱导的相互作用(由表面紊乱场之间的耦合和耦合引起抗衡离子的时刻)导致两个随机带电的表面之间具有更强的有吸引力的相互作用。相互作用轮廓成为交叉表面分离的非单调函数,在相对较小的分离下显示有吸引力的最小值,其中随后的吸引力可以超过最大的强耦合吸引力(通过均匀带电表面之间的多价单极逆分体产生)的最大强度一个数量级。通过AIP发布发布。

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