The theory of transport phenomena in multicomponent electrolyte solutions is presented here through the integration of continuum mechanics, electromagnetism, and nonequilibrium thermodynamics. The governing equations of irreversible thermodynamics, including balance laws, Maxwell's equations, internal entropy production, and linear laws relating the thermodynamic forces and fluxes, are derived. Green–Kubo relations for the transport coefficients connecting electrochemical potential gradients and diffusive fluxes are obtained in terms of the flux–flux time correlations. The relationship between the derived transport coefficients and those of the Stefan–Maxwell and infinitely dilute frameworks are presented, and the connection between the tra...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
Electro-thermodynamics provides a consistent framework to derive continuum models for electrochemica...
Electro-thermodynamics provides a consistent framework to derive continuum models for electrochemica...
Newman’s developments of electrochemical thermodynamics and transport phenomena are extended to acco...
Physical parameters characterizing electrokinetic transport in a confined electrolyte solution are r...
Multicomponent electrolyte solutions are found in a wide variety of electrochemical devices. Two app...
10 pages with 3 figuresPhysical parameters characterising electrokinetic transport in a confined ele...
Li-ion batteries are among the leading technologies for electric vehicles and grid-scale renewable e...
The concentration dependence of the transport properties (i.e., the conductivity and the viscosity) ...
Non-equilibrium thermodynamics is applied to isothermal vector transport processes in concentrated a...
Non-equilibrium thermodynamics is applied to isothermal vector transport processes in concentrated a...
Modelling of heterogeneous processes, such as electrochemical reactions, extraction or ion-exchange,...
The concentration dependence of the transport properties (i.e., the conductivity and the viscosity) ...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
Electro-thermodynamics provides a consistent framework to derive continuum models for electrochemica...
Electro-thermodynamics provides a consistent framework to derive continuum models for electrochemica...
Newman’s developments of electrochemical thermodynamics and transport phenomena are extended to acco...
Physical parameters characterizing electrokinetic transport in a confined electrolyte solution are r...
Multicomponent electrolyte solutions are found in a wide variety of electrochemical devices. Two app...
10 pages with 3 figuresPhysical parameters characterising electrokinetic transport in a confined ele...
Li-ion batteries are among the leading technologies for electric vehicles and grid-scale renewable e...
The concentration dependence of the transport properties (i.e., the conductivity and the viscosity) ...
Non-equilibrium thermodynamics is applied to isothermal vector transport processes in concentrated a...
Non-equilibrium thermodynamics is applied to isothermal vector transport processes in concentrated a...
Modelling of heterogeneous processes, such as electrochemical reactions, extraction or ion-exchange,...
The concentration dependence of the transport properties (i.e., the conductivity and the viscosity) ...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...