International audienceThe effect of vinylenecarbonate (VC) as electrolyteadditive on the properties of the silicon electrode / liquid electrolyteinterface was studied in this paper. Galvanostatic cycling, X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM) and scanning electron microscopy (SEM) were used to investigate the SEI layer properties and the morphology at different stages of the cycling of thin film electrodes. The electrochemical performances were drastically improved by the introduction of a few per cent of VC additive. It was found that the SEI layer formed in VC-containing electrolyte has a different chemical composition and better resists to the stress caused by large volume variations associated with lithia...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
Silicon is a promising negative electrode for secondary lithium-based batteries, but the electrochem...
International audienceThe effect of vinylenecarbonate (VC) as electrolyteadditive on the properties ...
Silicon which has a theoretical capacity around 3500 mAh g−1 and low insertion/deinsertion potential...
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...
International audienceThe effect of Vinylene Carbonate (VC) additive upon the properties of the Soli...
A fundamental study of interfacial phenomena on a Si(100) single crystal electrode in organic carbon...
A silicon thin-film electrode (thickness= 200nm) is prepared by E-beam evaporation and deposition on...
This work focuses on the mechanisms of interfacial processes at the surface of amorphous silicon thi...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
This thesis is focusing on the challenges when using Si as a possible new negative electrode materia...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
Silicon is a promising negative electrode for secondary lithium-based batteries, but the electrochem...
International audienceThe effect of vinylenecarbonate (VC) as electrolyteadditive on the properties ...
Silicon which has a theoretical capacity around 3500 mAh g−1 and low insertion/deinsertion potential...
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...
International audienceThe effect of Vinylene Carbonate (VC) additive upon the properties of the Soli...
A fundamental study of interfacial phenomena on a Si(100) single crystal electrode in organic carbon...
A silicon thin-film electrode (thickness= 200nm) is prepared by E-beam evaporation and deposition on...
This work focuses on the mechanisms of interfacial processes at the surface of amorphous silicon thi...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
This thesis is focusing on the challenges when using Si as a possible new negative electrode materia...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The key factor in long-term use of batteries is the formation of an electrically insulating solid la...
In order to utilize renewable energy sources to avoid adverse climate change caused by fossil fuel u...
Silicon is a promising negative electrode for secondary lithium-based batteries, but the electrochem...