Silicon which has a theoretical capacity around 3500 mAh g−1 and low insertion/deinsertion potentials is one of the most promising candidates to replace graphite as a negative electrode in lithium-ion batteries. Electrochemical performances of Si electrodes are highly dependent on the quality of the SEI. Therefore, the effect of an electrolyte additive, the vinylene carbonate (VC) on electrochemical performances was investigated on sputtered silicon thin films which constitute a simple system (avoiding the use of binders or any conducting additive material). The addition of only 2% of VC significantly improves the capacity retention as well as the coulombic efficiency leading to a capacity retention of 84% after 500 cycles and a coulombic e...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
International audienceThe effect of Vinylene Carbonate (VC) additive upon the properties of the Soli...
Germanium thin-film anodes for Li-ion battery applications are the focus of the present work. As par...
Silicon which has a theoretical capacity around 3500 mAh g−1 and low insertion/deinsertion potential...
International audienceThe effect of vinylenecarbonate (VC) as electrolyteadditive on the properties ...
The effect of vinylene carbonate (VC) as electrolyte additive on the electrochemical performances of...
Additives play critical roles on the performances of electrolytes. Vinyl tris(2-methoxyethoxy) silan...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
Effect of film-forming additives, such as vinylene carbonate (VC) and fluoroethylene carbonate (FEC)...
A silicon thin-film electrode (thickness= 200nm) is prepared by E-beam evaporation and deposition on...
Effect of vinylene carbonate electrolyte additive and battery cycling protocol on the electrochemica...
We investigated the effect of electrolyte additives on an untreated, conventional micro-sized (non-n...
In this study, the decomposition of vinylene carbonate (VC) additive and its effect on the aging beh...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
International audienceThe effect of Vinylene Carbonate (VC) additive upon the properties of the Soli...
Germanium thin-film anodes for Li-ion battery applications are the focus of the present work. As par...
Silicon which has a theoretical capacity around 3500 mAh g−1 and low insertion/deinsertion potential...
International audienceThe effect of vinylenecarbonate (VC) as electrolyteadditive on the properties ...
The effect of vinylene carbonate (VC) as electrolyte additive on the electrochemical performances of...
Additives play critical roles on the performances of electrolytes. Vinyl tris(2-methoxyethoxy) silan...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
Effect of film-forming additives, such as vinylene carbonate (VC) and fluoroethylene carbonate (FEC)...
A silicon thin-film electrode (thickness= 200nm) is prepared by E-beam evaporation and deposition on...
Effect of vinylene carbonate electrolyte additive and battery cycling protocol on the electrochemica...
We investigated the effect of electrolyte additives on an untreated, conventional micro-sized (non-n...
In this study, the decomposition of vinylene carbonate (VC) additive and its effect on the aging beh...
Electrolyte additives have the ability to increase the performance of Li-ion batteries in several wa...
International audienceThe effect of Vinylene Carbonate (VC) additive upon the properties of the Soli...
Germanium thin-film anodes for Li-ion battery applications are the focus of the present work. As par...