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Effect of electrode pore geometry modeled using Nernst–Planck–Poisson-modified Stern layer model

机译:使用Nernst–Planck–Poisson修改的Stern层模型建模的电极孔隙几何形状的影响

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摘要

A planar electrode containing cylindrical pores with semi-circular ends is modeled using a finite element implementation of the transient nonlinear 2D Nernst– Planck–Poisson-modified Stern (NPPMS) model. The model uses a modified Stern layer to account for finite ion size. The study includes the effects of pore radius and depth on the predicted electric potential, ion concentration, surface charge density, surface energy density, and charging time. The ion concentration and electric potential are found to be sensitive to the change in radii of the pore and insensitive to the pore depth. The surface charge density is slightly higher within the pore than along the vertical flat regions of the electrode. The increase in surface area due to porosity increases the charging time.
机译:使用瞬态非线性二维Nernst–Planck–Poisson修正Stern(NPPMS)模型的有限元实现,对包含具有半圆形端部的圆柱孔的平面电极进行建模。该模型使用修改后的Stern层来说明有限的离子尺寸。该研究包括孔半径和深度对预测电势,离子浓度,表面电荷密度,表面能量密度和充电时间的影响。发现离子浓度和电势对孔的半径变化敏感而对孔深度不敏感。孔内的表面电荷密度比沿电极的垂直平坦区域略高。由于孔隙率引起的表面积增加增加了充电时间。

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