Advances in the fields of catalysis and electrochemical energy conversion often involve nanoparticles, which can have kinetics surprisingly different from the bulk material. Classical theories of chemical kinetics assume independent reactions in dilute solutions, whose rates are determined by mean concentrations. In condensed matter, strong interactions alter chemical activities and create variations that can dramatically affect the reaction rate. The extreme case is that of a reaction coupled to a phase transformation, whose kinetics must depend not only on the order parameter but also on its gradients at phase boundaries. Reaction-driven phase transformations are common in electrochemistry, when charge transfer is accompanied by ion inter...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Interfacial charge transfer is widely assumed to obey the Butler–Volmer kinetics. For certain liquid...
During the operation of a rechargeable battery, the electrochemical reactions occur at the interface...
We reformulate and extend porous electrode theory for non-ideal active materials, including those ca...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
© 2020 Elsevier Ltd The microscopic theory of chemical reactions is based on transition state theory...
© 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...
Compact solid discharge products enable energy storage devices with high gravimetric and volumetric ...
Using the recently developed Cahn-Hilliard reaction (CHR) theory, we present a simple mathematical m...
In the framework of non-equilibrium thermodynamics, we derive a new model for many-particle electrod...
Abstract. Lithium-ion batteries exhibit complex nonlinear dynamics, resulting from diffusion and pha...
Electrochemical energy storage systems become increasingly important due to the advent of large-scal...
Lithium-ion batteries exhibit complex nonlinear dynamics, resulting from diffusion and phase transfo...
In the framework of non-equilibrium thermodynamics we derive a new model for porous electrodes. The ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Interfacial charge transfer is widely assumed to obey the Butler–Volmer kinetics. For certain liquid...
During the operation of a rechargeable battery, the electrochemical reactions occur at the interface...
We reformulate and extend porous electrode theory for non-ideal active materials, including those ca...
© The Author(s) 2017. Porous electrode theory, pioneered by John Newman and collaborators, provides ...
© 2020 Elsevier Ltd The microscopic theory of chemical reactions is based on transition state theory...
© 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...
Compact solid discharge products enable energy storage devices with high gravimetric and volumetric ...
Using the recently developed Cahn-Hilliard reaction (CHR) theory, we present a simple mathematical m...
In the framework of non-equilibrium thermodynamics, we derive a new model for many-particle electrod...
Abstract. Lithium-ion batteries exhibit complex nonlinear dynamics, resulting from diffusion and pha...
Electrochemical energy storage systems become increasingly important due to the advent of large-scal...
Lithium-ion batteries exhibit complex nonlinear dynamics, resulting from diffusion and phase transfo...
In the framework of non-equilibrium thermodynamics we derive a new model for porous electrodes. The ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Interfacial charge transfer is widely assumed to obey the Butler–Volmer kinetics. For certain liquid...
During the operation of a rechargeable battery, the electrochemical reactions occur at the interface...