Limmer David T
Princeton Center for Theoretical Science, Princeton University, Princeton New Jersey 08540, USA.
Phys Rev Lett. 2015 Dec 18;115(25):256102. doi: 10.1103/PhysRevLett.115.256102. Epub 2015 Dec 17.
A theory is constructed for dense ionic solutions near charged planar walls that is valid for strong interionic correlations. This theory predicts a fluctuation-induced, first-order transition and spontaneous charge density ordering at the interface, in the presence of an otherwise disordered bulk solution. The surface ordering is driven by applied voltage and results in an anomalous differential capacitance, in agreement with recent simulation results and consistent with experimental observations of a wide array of systems. Explicit forms for the charge density profile and capacitance are given. The theory is compared with numerical results for the charge frustrated Ising model, which is also found to exhibit a voltage driven first-order transition.
构建了一种适用于靠近带电平面壁的浓离子溶液的理论,该理论对强离子间相关性有效。该理论预测,在存在无序本体溶液的情况下,界面处会出现由涨落诱导的一级相变和自发电荷密度有序化。表面有序化由施加电压驱动,导致异常微分电容,这与最近的模拟结果一致,并且与大量系统的实验观察结果相符。给出了电荷密度分布和电容的显式形式。将该理论与电荷受挫伊辛模型的数值结果进行了比较,发现该模型也表现出电压驱动的一级相变。