论文标题

电气双层的差分电容:泊松型摩托车公式

Differential Capacitance of Electric Double Layers: A Poisson-Bikerman Formula

论文作者

Chen, Ren-Chuen, Li, Chin-Lung, Chen, Jen-Hao, Eisenberg, Bob, Liu, Jinn-Liang

论文摘要

我们提出了一个用于计算水溶液或离子液体中电气双层(EDLS)的差分电容(DC)的泊松型自行者(PBIK)公式。 PBIK理论是对经典泊松托玻尔兹曼理论的概括,其中包括不同尺寸离子和水的不同空间能量,类似于不同载荷离子的不同电能。在该分子平均场理论中具有间质空隙的水和离子具有其物理体积,就像它们在分子动力学模拟中一样。源自离子和水的费米分布的PBIK公式,以任意形状和体积减少到源自源自等尺寸离子晶格模型的bikerman-Freise公式。 Gouy-Chapman公式预测的DC曲线是U形的(对于零体积和非常稀释溶液的点状离子)。随着离子的体积分数和水的体积分数从零变为中值,然后变为大值,曲线从U形到骆驼形变为骆驼形(Bactrian),然后再变成钟形(对于有限的大小离子)。过渡的特征是临界和弯曲电压在粒子体积分数方面。这些电压决定了在高场条件下堆积的离子和水的空间/电荷竞争和饱和特性的空间和电能。在这些条件下,空间能量与电能一样重要。 PBIK从不对称尺寸离子和水的微妙平衡空间相互作用中计算对称DC曲线,例如水溶液中KPF6的实验数据。它计算不对称曲线并捕获具有不同体积或电荷在离子液体中的离子的微妙平衡或电气相互作用。

We propose a Poisson-Bikerman (PBik) formula for calculating the differential capacitance (DC) of electrical double layers (EDLs) in aqueous electrolytes or ionic liquids. The PBik theory is a generalization of the classical Poisson-Boltzmann theory to include different steric energies of different-sized ions and water similar to different electrical energies for different-charged ions. Water and ions with interstitial voids in this molecular mean field theory have their physical volumes as they do in molecular dynamics simulations. The PBik formula derived from Fermi distributions of ions and water in arbitrary shape and volume reduces to the Bikerman-Freise formula derived from the lattice model of equal-sized ions. The DC curves predicted by the Gouy-Chapman formula are U-shaped (for point-like ions with zero volume and very dilute solutions). The curves change from U shape to camel shape (Bactrian) and then to bell shape (for finite size ions) as the volume fraction of ions and water changes from zero to medium value then to large value. The transition is characterized by critical and inflection voltages in terms of the particle volume fraction. These voltages determine steric and electrical energies that describe the space/charge competition and saturation properties of ions and water packed in the condensed layer of EDLs under high field conditions. Steric energy is as important as electrical energy in these conditions. PBik computes symmetric DC curves from delicately balanced steric interactions of asymmetric-size ions and water like the experimental data of KPF6 in aqueous solution. It computes asymmetric curves and captures delicately balanced steric or electrical interactions of ions having different volumes or charges in ionic liquids.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源