Solid electrolyte interphase (SEI) layer that forms on the graphite negative electrodes of lithium-ion batteries (LIBs) has a crucial role in inhibiting the excess decomposition of electrolyte solutions. While this passivating ability is essential for improving the durability of LIBs, the relationship between the passivating ability and the surface structure of the graphite is not yet fully understood. In this study, we investigate the solvent co-intercalation behavior in the presence of SEI layers formed on various types of graphite surface structures. The amount of edge sites on each graphite sample is determined using electric double layer capacitance. The co-intercalation reactions of untreated, ethylene-carbonate-treated, and vinylene-...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
This paper focuses on stress generation during the initial stages of the Solid Electrolyte Interphas...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The performance of the graphite anode of lithium-ion batteries is greatly affected by the solid elec...
We investigated the Solid Electrolyte Interphase (SEI) formed onto graphite using adiponitrile/dimet...
The first electrochemical lithium insertion was characterized for several graphite materials with hi...
The solid electrode interphase (SEI) on graphite electrodes is important to the performance, calenda...
In the field of small portable electrical devices, lithium-ion batteries are common. Graphite is use...
AbstractAn in-depth historical and current review is presented on the science of lithium-ion battery...
This paper focuses on stress generation during the initial stages of the Solid Electrolyte Interphas...
International audienceThe formation of a passivation film (solid electrolyte interphase, SEI) at the...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The solid electrode interphase (SEI) on graphite electrodes is important to the performance, calenda...
We used in situ atomic force microscope to observe the evolution of the solid-electrolyte interphase...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
This paper focuses on stress generation during the initial stages of the Solid Electrolyte Interphas...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The performance of the graphite anode of lithium-ion batteries is greatly affected by the solid elec...
We investigated the Solid Electrolyte Interphase (SEI) formed onto graphite using adiponitrile/dimet...
The first electrochemical lithium insertion was characterized for several graphite materials with hi...
The solid electrode interphase (SEI) on graphite electrodes is important to the performance, calenda...
In the field of small portable electrical devices, lithium-ion batteries are common. Graphite is use...
AbstractAn in-depth historical and current review is presented on the science of lithium-ion battery...
This paper focuses on stress generation during the initial stages of the Solid Electrolyte Interphas...
International audienceThe formation of a passivation film (solid electrolyte interphase, SEI) at the...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
The solid electrode interphase (SEI) on graphite electrodes is important to the performance, calenda...
We used in situ atomic force microscope to observe the evolution of the solid-electrolyte interphase...
Energy storage technologies are crucial in the next green-energy transition. In particular, Li-ion b...
Lithium intercalation into graphite was investigated using a graphite with a spheroidal particle mor...
This paper focuses on stress generation during the initial stages of the Solid Electrolyte Interphas...