International audienceAfter an introduction to lithium insertion compounds and the principles of Li-ion cells, we present a comparative study of the physical and electrochemical properties of positive electrodes used in lithium-ion batteries (LIBs). Electrode materials include three different classes of lattices according to the dimensionality of the Li+ ion motion in them: olivine, layered transition-metal oxides and spinel frameworks. Their advantages and disadvantages are compared with emphasis on synthesis difficulties, electrochemical stability, faradaic performance and security issue
With the rapid growth of lithium-ion batteries (LIBs) industry and market, it is important to develo...
International audienceThe lithium-ion battery technology is rooted in the studies of intercalation o...
Positive electrodes for Li-ion and lithium batteries (also termed "cathodes") have been under intens...
After an introduction to lithium insertion compounds and the principles of Li-ion cells, we present...
This work aims at the comparative study of positive electrodes used in advanced rechargeable lithium...
In the recent years, lithium-ion batteries have prevailed and dominated as the primary power sources...
The introduction of the first commercially produced Li-ion battery by Sony in 1990 sparked a period ...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
This PH.D project aims to prepare and study the preparations of advanced electrode materials with hi...
In recent years, the primary power sources for portable electronic devices are lithium ion batteries...
Beginning with the ‘frog-leg experiment’ by Galvani (1786), followed by the demonstrations of Volta ...
Beginning with the ‘frog-leg experiment’ by Galvani (1786), followed by the demonstrations of Volta ...
Lithium ion batteries are typically based on one of three positive-electrode materials, namely layer...
This work is a brief review of physicochemical properties of modern cathode materials for Li-ion bat...
This review paper presents a comprehensive analysis of the electrode materials used for Li-ion batte...
With the rapid growth of lithium-ion batteries (LIBs) industry and market, it is important to develo...
International audienceThe lithium-ion battery technology is rooted in the studies of intercalation o...
Positive electrodes for Li-ion and lithium batteries (also termed "cathodes") have been under intens...
After an introduction to lithium insertion compounds and the principles of Li-ion cells, we present...
This work aims at the comparative study of positive electrodes used in advanced rechargeable lithium...
In the recent years, lithium-ion batteries have prevailed and dominated as the primary power sources...
The introduction of the first commercially produced Li-ion battery by Sony in 1990 sparked a period ...
This work presents the recent progress in nanostructured materials used as positive electrodes in Li...
This PH.D project aims to prepare and study the preparations of advanced electrode materials with hi...
In recent years, the primary power sources for portable electronic devices are lithium ion batteries...
Beginning with the ‘frog-leg experiment’ by Galvani (1786), followed by the demonstrations of Volta ...
Beginning with the ‘frog-leg experiment’ by Galvani (1786), followed by the demonstrations of Volta ...
Lithium ion batteries are typically based on one of three positive-electrode materials, namely layer...
This work is a brief review of physicochemical properties of modern cathode materials for Li-ion bat...
This review paper presents a comprehensive analysis of the electrode materials used for Li-ion batte...
With the rapid growth of lithium-ion batteries (LIBs) industry and market, it is important to develo...
International audienceThe lithium-ion battery technology is rooted in the studies of intercalation o...
Positive electrodes for Li-ion and lithium batteries (also termed "cathodes") have been under intens...