论文标题
电动双层的不对称静电特性:考虑到不均匀尺寸效应和水极化
Asymmetric electrostatic properties of an electric double layer: a generalized Poisson-Boltzmann approach taking into account non-uniform size effects and water polarization
论文作者
论文摘要
理论上,我们使用通用的托管玻尔兹曼方法研究了电级别的静电性能,并考虑了水偶极子的定向排序以及水分子的排除体积效应,以及具有不同大小的电解质溶液的正离子和负离子的静电效应。我们的方法使人们能够预测水分子,柜台和库的数量密度以及接近带电表面的电解质溶液的介电性,不对称地取决于表面电荷密度的符号和幅度,并且相反的体积。我们更详细地对待几种现象。首先,柜台体积的增加和表面电荷密度的增加会导致水分子的最小数量密度与带电表面的位置更远。其次,电压范围的宽度随着带电表面对称的性能随着体积盐浓度的增加而变化的宽度。此外,我们表明,根据表面电压,水分子排除的体积效应和水偶极子的定向排序可能会导致最大电容的最大发作和降低。我们的方法和结果可以应用于描述生物膜和电力电容器的静电性能,其排除的水分子和不同尺寸的离子的体积影响可能很重要。
We theoretically study electrostatic properties of electric double layer using a generalized Poisson-Boltzmann approach taking into account the orientational ordering of water dipoles and the excluded volume effect of water molecules as well as those of positive and negative ions with different sizes in electrolyte solution. Our approach enables one to predict that the number densities of water molecules, counterions and coions and the permittivity of electrolyte solution close to a charged surface, asymmetrically vary depending on both of sign and magnitude of the surface charge density and the volume of counterion. We treat several phenomena in more detail. Firstly, an increase in the volume of counterions and an increase in the surface charge density can cause the position of the minimum number density of water molecules to be farther from the charged surface. Secondly, width of the range of voltage in which the properties at the charged surface symmetrically vary decreases with increasing bulk salt concentration. In addition, we show that the excluded volume effect of water molecules and the orientational ordering of water dipoles can lead to early onset and lowering of the maximum of electric capacitance according to surface voltage. Our approach and results can be applied to describing electrostatic properties of biological membranes and electric double layer capacitor for which excluded volume effects of water molecules and ions with different sizes may be important.