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Ionic liquid–electrode interface: From one law to fit them all to one model to predict them all

  • University of Tartu

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

The electric double layer (EDL) – arguably the central concept in electrochemistry – remains the nut everyone wants to crack to tune its properties and, thus, control the performance of electrochemical devices. One such property is the differential capacitance that determines the energy density in supercapacitors. In this communication, we show that the capacitance–potential dependence can be fitted with a four-parameter model for ionic liquid–electrode interfaces, where steric packing naturally results in a power-law scaling. First, we demonstrate how these parameters can be evaluated and used to interpret the EDL structure and properties. Second, we demonstrate how the model enables predictions of both differential capacitance and energy density.

Original languageEnglish
Article number108049
JournalElectrochemistry Communications
Volume180
DOIs
Publication statusPublished - Nov 2025

Keywords

  • Capacitance–potential dependence
  • Differential capacitance
  • Electrical double layer
  • Energy density
  • Ionic liquid
  • Molecular dynamics

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