The performance of sodium-ion batteries largely depends on the presence and properties of passive films formed on the electrode/electrolyte interfaces. Passive films on negative electrodes inevitably result from the reduction in electrolyte components (solvent and salt anion). They have the properties of a solid electrolyte with sodium ion conductivity and are insulators in terms of electronic conductivity. Usually, they are called SEI—solid electrolyte interphase. The formation of SEI is associated with the consumption of a certain charge, which is an irreversible capacity. Passive films on the surface of positive electrodes (CEI—cathode electrolyte interphase) arise as a result of electrolyte oxidation. The present review summarizes the l...
International audienceSodium-ion batteries (SIBs) were investigated as recently as in the seventies....
Rechargeable Li-ion battery technology has progressed due to the development of a suitable combinati...
With the rapid development of electric power, lithium materials, as a rare metal material, will be u...
International audienceAiming at a more comprehensive understanding of the solid electrolyte interpha...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
It is often stated that formation of a functional solid electrolyte interphase (SEI) in sodium ion b...
International audienceA study of the Solid Electrolyte Interphase (SEI) on hard-carbon (HC) electrod...
The interfacial reactions in sodium-ion batteries (SIBs) are not well understood yet. The formation ...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
International audienceTo understand the origin of the better performance of Sb electrode i) vs Na th...
Lithium ion batteries are widely used in small portable electronics. Their application in larger dev...
In order to move away from fossil fuels, batteries are one of the most important technologies to sto...
International audienceSodium-ion batteries (SIBs) were investigated as recently as in the seventies....
Rechargeable Li-ion battery technology has progressed due to the development of a suitable combinati...
With the rapid development of electric power, lithium materials, as a rare metal material, will be u...
International audienceAiming at a more comprehensive understanding of the solid electrolyte interpha...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
It is often stated that formation of a functional solid electrolyte interphase (SEI) in sodium ion b...
International audienceA study of the Solid Electrolyte Interphase (SEI) on hard-carbon (HC) electrod...
The interfacial reactions in sodium-ion batteries (SIBs) are not well understood yet. The formation ...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
The current commercial lithium ion battery utilizes “host-guest” electrodes that allow for the inter...
International audienceTo understand the origin of the better performance of Sb electrode i) vs Na th...
Lithium ion batteries are widely used in small portable electronics. Their application in larger dev...
In order to move away from fossil fuels, batteries are one of the most important technologies to sto...
International audienceSodium-ion batteries (SIBs) were investigated as recently as in the seventies....
Rechargeable Li-ion battery technology has progressed due to the development of a suitable combinati...
With the rapid development of electric power, lithium materials, as a rare metal material, will be u...