Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cataloged from PDF version of thesis.Includes bibliographical references (pages 147-170).Lithium-ion batteries are increasingly important, both in portable electronic devices and as grid stabilization for intermittent renewable sources. The varied applications involve varying requirements for safety, lifetime, and energy/power density. The broad requirement space leads to a large design space, requiring either extensive and costly experimentation or effective models. To be predictive enough to facilitate design, models must be based on underlying physics. However, battery models commonly make assumptions known to be false, such as describing phas...
This thesis discusses mathematical models for phase separation pattern in electrode materials for li...
Electrochemical energy storage systems become increasingly important due to the advent of large-scal...
We present a porous electrode model for lithium-ion batteries using Butler-Volmer reaction kinetics....
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.This...
We reformulate and extend porous electrode theory for non-ideal active materials, including those ca...
Lithium transport and phase separation in and across interconnected electrode particles, are investi...
Lithium transport and phase separation in and across interconnected electrode particles, are investi...
The focus of this thesis work is the application of non-equilibrium thermodynamics in lithium-ion ba...
Lithium transport and phase separation in and across interconnected electrode particles are investig...
Porous electrodes composed of multiphase active materials are widely used in Li-ion batteries, but t...
Lithium-ion batteries have become the centerpiece of portable technology and electric transportation...
This thesis discusses mathematical models for phase separation pattern in electrode materials for l...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2015.Cataloged fro...
© 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 ...
This thesis discusses mathematical models for phase separation pattern in electrode materials for li...
Electrochemical energy storage systems become increasingly important due to the advent of large-scal...
We present a porous electrode model for lithium-ion batteries using Butler-Volmer reaction kinetics....
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.This...
We reformulate and extend porous electrode theory for non-ideal active materials, including those ca...
Lithium transport and phase separation in and across interconnected electrode particles, are investi...
Lithium transport and phase separation in and across interconnected electrode particles, are investi...
The focus of this thesis work is the application of non-equilibrium thermodynamics in lithium-ion ba...
Lithium transport and phase separation in and across interconnected electrode particles are investig...
Porous electrodes composed of multiphase active materials are widely used in Li-ion batteries, but t...
Lithium-ion batteries have become the centerpiece of portable technology and electric transportation...
This thesis discusses mathematical models for phase separation pattern in electrode materials for l...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2015.Cataloged fro...
© 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 ...
This thesis discusses mathematical models for phase separation pattern in electrode materials for li...
Electrochemical energy storage systems become increasingly important due to the advent of large-scal...
We present a porous electrode model for lithium-ion batteries using Butler-Volmer reaction kinetics....