Physical Chemistry Chemical Physics · 2018 · 18 citations · 15 references
EngineeringElectrode-electrolyte InterfaceChemistryMean-field TheoryIon ProcessIonic InteractionsSize-asymmetric Mean-field TheoryElectrochemical InterfaceBiophysicsSolid-state IonicElectrical EngineeringPhysicsPhysical ChemistryDifferential CapacitanceElectrochemistryNatural SciencesIonic ConductorElectrophysiologyIon Structure
A size-asymmetric mean-field theory with ionic interactions is developed for the electric double layer of room temperature ionic liquid (IL) electrolytes, based on the previous work on non-interacting ions (Y. Han et al., J. Phys.: Condens. Matter, 2014, 26, 284103). By solving the modified Poisson-Boltzmann equation with some simplified assumptions following a recent work (Z. A. H. Goodwin et al., Electrochim. Acta, 2017, 225, 190-197), an analytical expression of differential capacitance can be derived, with a scaled electrode potential due to the ionic interactions. Compared with non-interacting ions, the main effect of ionic interactions is the insufficient screening of the electrode potential, and this depresses the differential capacitance compared with the non-interactive case.
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Martin Z. Bazant, Mustafa Sabri Kilic, Brian D. Storey et al. · Advances in Colloid and Interface Science · 2009 · 895 citations
Electrical Engineering, Large Applied Voltages, Engineering +10