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Tuning ion correlations at an electrified soft interface

机译:在带电的软界面上调整离子相关性

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Ion distributions play a central role in various settings-from biology, where they mediate the electrostatic interactions between charged biomolecules in solution, to energy storage devices, where they influence the charging properties of supercapacitors. These distributions are determined by interactions dictated by the chemical properties of the ions and their environment as well as the long-range nature of the electrostatic force. Recent theoretical and computational studies have explored the role of correlations between ions, which have been suggested to underlie a number of counterintuitive results, such as like-charge attraction. However, the interdependency between ion correlations and other interactions that ions experience in solution complicates the connection between physical models of ion correlations and the experimental investigation of ion distributions. We exploit the properties of the liquid/liquid interface to vary the coupling strength Γ of ion-ion correlations from weak to strong while monitoring their influence on ion distributions at the nanometer scale with X-ray reflectivity and the macroscopic scale with interfacial tension measurements. These data are in agreement with the predictions of a parameter-free density functional theory that includes ion-ion correlations and ion-solvent interactions over the entire range of experimentally tunable correlation coupling strengths (from 0.8 to 3.7). This study provides evidence for a sharply defined electrical double layer for large coupling strengths in contrast to the diffuse distributions predicted by mean field theory, thereby confirming a common prediction of many ion correlation models. The reported findings represent a significant advance in elucidating the nature and role of ion correlations in charged soft matter.
机译:离子分布在各种环境中都起着核心作用,从生物学到介导溶液中带电生物分子之间的静电相互作用,再到能量存储设备,它们在此影响超级电容器的充电性能。这些分布由离子的化学特性及其环境以及静电力的远距离特性决定的相互作用决定。最近的理论和计算研究已经探索了离子之间相关性的作用,这被认为是许多反直觉结果的基础,例如类似电荷的吸引。但是,离子相关性与离子在溶液中经历的其他相互作用之间的相互依赖性使离子相关性的物理模型与离子分布的实验研究之间的联系变得复杂。我们利用液/液界面的性质来改变离子-离子相关性的耦合强度从弱变强,同时通过X射线反射率和界面张力测量在宏观尺度上监测它们对离子分布的影响。这些数据与无参数密度泛函理论的预测一致,该理论包括在实验可调的相关耦合强度的整个范围内(从0.8到3.7)的离子-离子相关性和离子-溶剂相互作用。这项研究提供了一个证据,表明与平均场理论所预测的扩散分布相比,具有清晰定义的电双层具有较大的耦合强度,从而证实了许多离子相关模型的共同预测。报告的发现代表了阐明带电软物质中离子相关性的性质和作用的重大进展。

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