Electric Potential of Ions in Electrode Micropores Deduced from Calorimetry

Publication date

2022-10-28

Authors

Vos, Joren EzraISNI 0000000512654025
Inder Maur, Danny
Rodenburg, Hendrik P.ISNI 0000000512590009
Van den Hoven, Lennart
Schoemaker, SEISNI 0000000512606293
De Jongh, Petra E.ISNI 0000000395610073
Erné, B.H.ISNI 0000000397074702

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

unspecified

Abstract

The internal energy of capacitive porous carbon electrodes was determined experimentally as a function of applied potential in aqueous salt solutions. Both the electrical work and produced heat were measured. The potential dependence of the internal energy is explained in terms of two contributions, namely the field energy of a dielectric layer of water molecules at the surface and the potential energy of ions in the pores. The average electric potential of the ions is deduced, and its dependence on the type of salt suggests that the hydration strength limits how closely ions can approach the surface.

Keywords

General Physics and Astronomy, General Chemistry

Citation

Vos, J E, Inder Maur, D, Rodenburg, H P, Van den Hoven, L, Schoemaker, S E, De jongh, P E & Erné, B H 2022, 'Electric Potential of Ions in Electrode Micropores Deduced from Calorimetry', Physical Review Letters, vol. 129, no. 18, 186001, pp. 1-7. https://doi.org/10.1103/PhysRevLett.129.186001