Blessing and Curse: How a Supercapacitor's Large Capacitance Causes its Slow Charging

Publication date

2020-02-20

Authors

Lian, ChengISNI 0000000506807822
Janssen, M.A.ISNI 0000000493258624
Liu, Honglai
Roij, René vanISNI 0000000392993654

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

The development of novel electrolytes and electrodes for supercapacitors is hindered by a gap of several orders of magnitude between experimentally measured and theoretically predicted charging time scales. Here, we propose an electrode model, containing many parallel stacked electrodes, that explains the slow charging dynamics of supercapacitors. At low applied potentials, the charging behavior of this model is described well by an equivalent circuit model. Conversely, at high potentials, charging dynamics slow down and evolve on two relaxation time scales: a generalized R C time and a diffusion time, which, interestingly, become similar for porous electrodes. The charging behavior of the stack-electrode model presented here helps to understand the charging dynamics of porous electrodes and qualitatively agrees with experimental time scales measured with porous electrodes.

Keywords

Capacitance, Electrochemistry, Electrokinetic flows, Thermodynamics, Porous media, Nonequilibrium systems, Capacitors, Taverne

Citation

Lian, C, Janssen, M, Liu, H & van Roij, R 2020, 'Blessing and Curse : How a Supercapacitor's Large Capacitance Causes its Slow Charging', Physical Review Letters, vol. 124, no. 7, 076001, pp. 1-6. https://doi.org/10.1103/PhysRevLett.124.076001