Electrolytic solutions contain mobile ions that can pass current, and are essential components of any solution-phase electrochemical system. The Nernst–Planck–Poisson equations describe the electrodynamics and transport dynamics of electrolytic solutions.This thesis applies modern numerical and mathematical techniques in order to solve these equations, and hence determine the behaviour of electrochemical systems involving charge transport. The following systems are studied: a liquid junction where a concentration gradient causes charge transport; an ideally polarisable electrode where an applied potential difference causes charge transport; and an electrochemical cell where electrolysis causes charge transport.The nanometre Debye length and...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
Electrolytic solutions contain mobile ions that can pass current, and are essential components of an...
The work presented in this thesis investigates the mathematical modelling of charge transport in ele...
This thesis aims to develop new numerical and computational tools to study electrochemical transport...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis aims to develop new numerical and computational tools to study electrochemical transport...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
<p>Using the Poisson-Nernst-Planck (PNP) equations and modifications thereof, we consider two distin...
Multicomponent electrolyte solutions are found in a wide variety of electrochemical devices. Two app...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
Electrolytic solutions contain mobile ions that can pass current, and are essential components of an...
The work presented in this thesis investigates the mathematical modelling of charge transport in ele...
This thesis aims to develop new numerical and computational tools to study electrochemical transport...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis aims to develop new numerical and computational tools to study electrochemical transport...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
Electrodialysis and other electromembrane processes have been researched for decades. However, not a...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
<p>Using the Poisson-Nernst-Planck (PNP) equations and modifications thereof, we consider two distin...
Multicomponent electrolyte solutions are found in a wide variety of electrochemical devices. Two app...
Combined diffusion, migration, and advection of ions in a binary electrolyte plays a role in various...
An accurate mathematical description of the charge transfer rate at electrodes due to an electrochem...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...