Rate constants of electrochemical reactions, accompanying by electron transfer via the electrolyte–metal interface, exponentially depend on the electrode potential. We present Monte Carlo simulations illustrating the effect of fluctuations of the potential near the reactants on the rate of such reactions. The two models employed are based on the phenomenological Frumkin theory and aimed, respectively, at conventional electrolytes and polymer electrolytes widely used in fuel cells. In both cases, the role of spatio-temporal fluctuations is found to be minor if the dielectric constant in the double layer is large,’80 (as in the bulk water). If the double-layer dielectric constant is smaller, e.g. ’30 as it often takes place in conventional an...
Understanding how electrolyte solutions behave out of thermal equilibrium is a long-standing endeavo...
The influence of the diffuse double layer on the passage of Faradaic current is investigated for ste...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
Electrochemical systems span a wide range of timescales, and several recent works have put forth the...
Several electrochemical methods have been developed in recent years for the study of the kinetic par...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
An accurate mathematical description of the charge transfer rate at electrodes due to an electro che...
In this manuscript, we present a theoretical model for studying the population dynamics of electroch...
The effects of the interfacial potential distribution on cyclic voltammetry (CV) of adsorbed redox m...
Rates of electron-transfer between redox reactants located on opposite sides of the interface betwee...
Phase transition behaviors are not uncommon in voltammetry owning to strong interactions on the surf...
It is demonstrated for two cases of apparently ideal, ideally polarizable electrochemical interfaces...
The traditional textbook view of adsorptive features in electrochemistry, viz., involving a bell-sha...
The mechanism o f electron transfer in solution and at electrodes is described. A theoretical analy...
Understanding how electrolyte solutions behave out of thermal equilibrium is a long-standing endeavo...
The influence of the diffuse double layer on the passage of Faradaic current is investigated for ste...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...
Electrochemical interfaces present an extraordinarily complex reaction environment and several, ofte...
Electrochemical systems span a wide range of timescales, and several recent works have put forth the...
Several electrochemical methods have been developed in recent years for the study of the kinetic par...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
An accurate mathematical description of the charge transfer rate at electrodes due to an electro che...
In this manuscript, we present a theoretical model for studying the population dynamics of electroch...
The effects of the interfacial potential distribution on cyclic voltammetry (CV) of adsorbed redox m...
Rates of electron-transfer between redox reactants located on opposite sides of the interface betwee...
Phase transition behaviors are not uncommon in voltammetry owning to strong interactions on the surf...
It is demonstrated for two cases of apparently ideal, ideally polarizable electrochemical interfaces...
The traditional textbook view of adsorptive features in electrochemistry, viz., involving a bell-sha...
The mechanism o f electron transfer in solution and at electrodes is described. A theoretical analy...
Understanding how electrolyte solutions behave out of thermal equilibrium is a long-standing endeavo...
The influence of the diffuse double layer on the passage of Faradaic current is investigated for ste...
The results of molecular dynamics simulations of the properties of water in an aqueous ionic solutio...