论文标题
用于低到中间的电频率的修改泊松 - 尼斯特·尼斯特省理论
Modified Poisson-Nernst-Planck theory for low-to-mid frequency immittance of electric double-layer capacitors
论文作者
论文摘要
了解使用基于分析物理的模型的电容能量存储设备的系统级频谱止回响应不仅对技术的进步很重要,而且还可以更轻松地开发新的物理见解。在这里,我们报告了一种修改后的泊松 - 北部 - planck(PNP)系统,该系统描述了电荷浓度和电势作为电极的电极模型,用于电极,显示混合的电阻效应行为。这是通过(i)在电荷物种和电场的当前通量和浓度梯度之间纳入时间变化的方法,以及(ii)在连续性方程中引入时间分数衍生物。目的是表征符合理想电容器的偏离,这两者都在接近DC的频率下,例如,阻抗角度大于-90摄氏度,并且在系统逐渐转向电阻行为的中端频率下。后一种趋势对于建模很重要,以便从其余部分中识别设备的电容带宽的扩展。给出并讨论了对对称电解质/阻断电极配置的一维修饰PNP系统的解决方案和仿真结果。
Understanding the system-level spectral immittance response of capacitive energy storage devices with analytically tractable physics-based models is not only important for the progress of the technology, but also allows to develop new physical insights more easily. Here, we report a modified Poisson--Nernst--Planck (PNP) system describing charge concentration and electric potential as a model of electro-kinetics for electrodes showing mixed resistive-capacitive behavior. This is done by (i) incorporating time shifts between the current fluxes and both concentration gradients of charged species and the electric field, and (ii) introducing time fractional derivatives in the continuity equation. The aim is to characterize the deviation of immittance from that of ideal capacitors both at close-to-dc frequencies where the impedance angle for example is larger than -90 deg., and also at mid-range frequencies where the system veers progressively toward resistive behavior. This latter tendency is important to model in order to identify the extend of the capacitive bandwidth of the device from the rest. Solution and simulation results to the one-dimensional modified PNP system for symmetric electrolyte/blocking electrode configuration are presented and discussed.