We reformulate and extend porous electrode theory for non-ideal active materials, including those capable of phase transformations. Using principles of non-equilibrium thermodynamics, we relate the cell voltage, ionic fluxes, and faradaic charge-transfer kinetics to the variational electrochemical potentials of ions and electrons. The Butler-Volmer exchange current is consistently expressed in terms of the activities of the reduced, oxidized and transition states, and the activation overpotential is defined relative to the local Nernst potential. We also apply mathematical bounds on effective diffusivity to estimate porosity and tortuosity corrections. The theory is illustrated for a Li-ion battery with active solid particles described by a...
Porous electrodes instead of flat electrodes are widely used in electrochemical systems to boost sto...
In the framework of non-equilibrium thermodynamics we derive a new model for porous electrodes. The ...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.This...
Porous electrodes composed of multiphase active materials are widely used in Li-ion batteries, but t...
Advances in the fields of catalysis and electrochemical energy conversion often involve nanoparticle...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
We present a porous electrode model for lithium-ion batteries using Butler-Volmer reaction kinetics....
Most Li ion insertion batteries consist of a porous cathode, a separator filled with electrolyte and...
Porous electrodes instead of flat electrodes are widely used in electrochemical systems to boost sto...
In the framework of non-equilibrium thermodynamics we derive a new model for porous electrodes. The ...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.This...
Porous electrodes composed of multiphase active materials are widely used in Li-ion batteries, but t...
Advances in the fields of catalysis and electrochemical energy conversion often involve nanoparticle...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
Understanding the mechanisms and properties of various transport processes in the electrolyte, porou...
We present a porous electrode model for lithium-ion batteries using Butler-Volmer reaction kinetics....
Most Li ion insertion batteries consist of a porous cathode, a separator filled with electrolyte and...
Porous electrodes instead of flat electrodes are widely used in electrochemical systems to boost sto...
In the framework of non-equilibrium thermodynamics we derive a new model for porous electrodes. The ...
In order to improve the design of Li ion batteries the complex interplay of various physical phenome...