Consistent boundary conditions for electrochemical interfaces, which cover double layer charging, pseudo-capacitive effects and transfer reactions, are of high demand in electrochemistry and adjacent disciplines. Mathematical modeling and optimization of electrochemical systems is a strongly emerging approach to reduce cost and increase efficiency of super-capacitors, batteries, fuel cells, and electro-catalysis. However, many mathematical models which are used to describe such systems lack a real predictive value. Origin of this shortcoming is the usage of oversimplified boundary conditions. In this work we derive the boundary conditions for some general electrode-electrolyte interface based on non-equilibrium thermodynamics for volumes an...
Electrode potential is the key factor for controlling electrocatalytic reactions at electrochemical ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
In this work we discuss the modeling procedure and validation of a non-porous intercalation half-cel...
Consistent boundary conditions for electrochemical interfaces, which cover double layer charging, ps...
Consistent boundary conditions for electrochemical interfaces, which cover double layer charging, ps...
We consider the contact between an electrolyte and a solid electrode. At first we formulate a thermo...
We consider the contact between an electrolyte and a solid electrode. At first we formulate a thermo...
We derive the boundary conditions for the contact between an electrolyte and a solid electrode. At f...
We derive the boundary conditions for the contact between an electrolyte and a solid electrode. At f...
In this study some general aspects of the thermodynamics of systems with interfaces are discussed, a...
We deduce a generic interface theory to describe charge and electron transfer reactions at electrifi...
Interfacial reaction and transport processes are a decisive factor for the overall performance of el...
The commercial launch of lithium-ion batteries by Sony took place a quarter of a century ago, but th...
Die relevanten Prozesse in vielen elektrochemischen Anwendungen finden auf der Grenzfläche zwischen ...
We explain the principles of a software able to compute electrical potentials and currents in electr...
Electrode potential is the key factor for controlling electrocatalytic reactions at electrochemical ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
In this work we discuss the modeling procedure and validation of a non-porous intercalation half-cel...
Consistent boundary conditions for electrochemical interfaces, which cover double layer charging, ps...
Consistent boundary conditions for electrochemical interfaces, which cover double layer charging, ps...
We consider the contact between an electrolyte and a solid electrode. At first we formulate a thermo...
We consider the contact between an electrolyte and a solid electrode. At first we formulate a thermo...
We derive the boundary conditions for the contact between an electrolyte and a solid electrode. At f...
We derive the boundary conditions for the contact between an electrolyte and a solid electrode. At f...
In this study some general aspects of the thermodynamics of systems with interfaces are discussed, a...
We deduce a generic interface theory to describe charge and electron transfer reactions at electrifi...
Interfacial reaction and transport processes are a decisive factor for the overall performance of el...
The commercial launch of lithium-ion batteries by Sony took place a quarter of a century ago, but th...
Die relevanten Prozesse in vielen elektrochemischen Anwendungen finden auf der Grenzfläche zwischen ...
We explain the principles of a software able to compute electrical potentials and currents in electr...
Electrode potential is the key factor for controlling electrocatalytic reactions at electrochemical ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
In this work we discuss the modeling procedure and validation of a non-porous intercalation half-cel...