International audienceThis review focuses on the role of physical theory and computational electrochemistry for fundamental understanding, diagnostics and design of new electrochemical materials and operation conditions for energy storage through rechargeable Li ion batteries (LIBs). More particularly, deep insight based on multiscale physical modelling techniques, spanning scales from few atoms to the device level, can advise about the materials behaviour and aging and how components with optimal specifications could be made and how they can be integrated into operating devices. Concepts and different existing multiscale modelling methodologies are presented and some of the ongoing efforts within the community to understand from physical m...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
International audienceDevices for electrochemical energy conversion and storage exist at different l...
International audienceThis review focuses on the role of physical theory and computational electroch...
This review focuses on energy storage materials modeling, with particular emphasis on Li-ion batteri...
New experimental technology and theoretical approaches have advanced battery research across length ...
New experimental technology and theoretical approaches have advanced battery research across length ...
A general multiscale physical modeling framework is presented to simulate the transient operation an...
The performance and degradation of lithium batteries strongly depends on electrochemical, mechanical...
Computational modelling is a vital tool in the research of batteries and their component materials. ...
As an efficient means of energy storage, rechargeable batteries, especially the lithium-ion batterie...
Li-ion battery technology has a great success and is widely used in various portable technologies an...
Physics-based electrochemical battery models derived from porous electrode theory are a very powerfu...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
International audienceDevices for electrochemical energy conversion and storage exist at different l...
International audienceThis review focuses on the role of physical theory and computational electroch...
This review focuses on energy storage materials modeling, with particular emphasis on Li-ion batteri...
New experimental technology and theoretical approaches have advanced battery research across length ...
New experimental technology and theoretical approaches have advanced battery research across length ...
A general multiscale physical modeling framework is presented to simulate the transient operation an...
The performance and degradation of lithium batteries strongly depends on electrochemical, mechanical...
Computational modelling is a vital tool in the research of batteries and their component materials. ...
As an efficient means of energy storage, rechargeable batteries, especially the lithium-ion batterie...
Li-ion battery technology has a great success and is widely used in various portable technologies an...
Physics-based electrochemical battery models derived from porous electrode theory are a very powerfu...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
The performance, safety, and reliability of Li-ion batteries are determined by a complex set of mult...
International audienceDevices for electrochemical energy conversion and storage exist at different l...