In the field of small portable electrical devices, lithium-ion batteries are common. Graphite is used as the negative electrode. To improve its electrochemical performances, the first cycle specific charge loss must be decreased. It is predominantly attributed to the electrolyte reduction into a passivation layer. The graphite properties which influence this charge loss are not clearly identified. In particular, the graphite exfoliation which is responsible for a huge specific charge loss must be better understood. This dramatic phenomenon is due to solvent co-intercalation through the particle edge planes. Many graphite parameters such as crystallinity, surface chemistry and reactivity are thought to play a role. A systematic study was car...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
Limiter le vieillissement des accumulateurs lithium-ion est un challenge pour optimiser leur utilisa...
This work relates to the lithium ion battery field. The purpose of this study is tobetter understand...
In the field of small portable electrical devices, lithium-ion batteries are common. Graphite is use...
Les batteries à ions lithium alimentent la plupart des petits appareils électriques, portables. Ell...
Solid electrolyte interphase (SEI) layer that forms on the graphite negative electrodes of lithium-i...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The first electrochemical lithium insertion was characterized for several graphite materials with hi...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
Negative electrodes of lithium-ion batteries are mainly based on graphite, because of their good ele...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
Limiter le vieillissement des accumulateurs lithium-ion est un challenge pour optimiser leur utilisa...
This work relates to the lithium ion battery field. The purpose of this study is tobetter understand...
In the field of small portable electrical devices, lithium-ion batteries are common. Graphite is use...
Les batteries à ions lithium alimentent la plupart des petits appareils électriques, portables. Ell...
Solid electrolyte interphase (SEI) layer that forms on the graphite negative electrodes of lithium-i...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The first electrochemical lithium insertion was characterized for several graphite materials with hi...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
Negative electrodes of lithium-ion batteries are mainly based on graphite, because of their good ele...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
Limiter le vieillissement des accumulateurs lithium-ion est un challenge pour optimiser leur utilisa...
This work relates to the lithium ion battery field. The purpose of this study is tobetter understand...