Yang Jie, Janssen Mathijs, Lian Cheng, van Roij René
School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai 200237, China.
Department of Mathematics, Mechanics Division, University of Oslo, N-0851 Oslo, Norway.
J Chem Phys. 2022 Jun 7;156(21):214105. doi: 10.1063/5.0094553.
Understanding how electrolyte-filled porous electrodes respond to an applied potential is important to many electrochemical technologies. Here, we consider a model supercapacitor of two blocking cylindrical pores on either side of a cylindrical electrolyte reservoir. A stepwise potential difference 2Φ between the pores drives ionic fluxes in the setup, which we study through the modified Poisson-Nernst-Planck equations, solved with finite elements. We focus our discussion on the dominant timescales with which the pores charge and how these timescales depend on three dimensionless numbers. Next to the dimensionless applied potential Φ, we consider the ratio R/R of the pore's resistance R to the bulk reservoir resistance R and the ratio r/λ of the pore radius r to the Debye length λ. We compare our data to theoretical predictions by Aslyamov and Janssen (Φ), Posey and Morozumi (R/R), and Henrique, Zuk, and Gupta (r/λ). Through our numerical approach, we delineate the validity of these theories and the assumptions on which they were based.
了解充满电解质的多孔电极如何响应外加电势对许多电化学技术而言至关重要。在此,我们考虑一个模型超级电容器,它由圆柱形电解质储液器两侧的两个阻塞圆柱形孔组成。孔之间的阶跃电势差2Φ驱动装置中的离子通量,我们通过用有限元求解的修正泊松 - 能斯特 - 普朗克方程来研究这一现象。我们将讨论重点放在孔充电的主导时间尺度以及这些时间尺度如何依赖于三个无量纲数上。除了无量纲外加电势Φ,我们还考虑孔电阻R与本体储液器电阻R的比值R/R以及孔半径r与德拜长度λ的比值r/λ。我们将我们的数据与阿斯利亚莫夫和扬森(关于Φ)、波西和森胁(关于R/R)以及恩里克、祖克和古普塔(关于r/λ)的理论预测进行比较。通过我们的数值方法,我们划定了这些理论的有效性及其所基于的假设。