International audienceSilicon-based anode fabrication with nanoscale structuration improves the energy density and life cycle of Li-ion batteries. As-synthesized silicon (Si) nanowires (NWs) or nanoparticles (NPs) directly on the current collector represent a credible alternative to conventional graphite anodes. However, the operating potentials of these electrodes are below the electrochemical stability window of all electrolytes used in commercial Li-ion systems. During the first charging phase of the cell, partial decomposition of the electrolyte takes place, which leads to the formation of a layer at the surface of the electrode, called solid electrolyte interphase (SEI). A stable and continuous SEI layer formation is a critical factor ...
To gain new insights into the formation of the solid electrolyte interphase (SEI), as a basis for th...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
International audienceSilicon-based anode fabrication with nanoscale structuration improves the ener...
Silicon anodes are of great interest for advanced lithium-ion battery applications due to their orde...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
High-density silicon composite anodes show large volume changes upon charging/discharging triggering...
Even though it has the highest known theoretical specific capacity of any material (~3600 mAh/g), si...
The surface reactions of electrolytes with a silicon anode in lithium ion cells have been investigat...
Over the last 25 years, the performance increase of lithium-ion batteries has been largely driven by...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
The solid electrolyte interphase (SEI) is a key component of a lithium-ion battery forming during th...
Chemical and structural modifications occurring in homogeneous crystalline Si nanoparticles (NPs) us...
To gain new insights into the formation of the solid electrolyte interphase (SEI), as a basis for th...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
International audienceSilicon-based anode fabrication with nanoscale structuration improves the ener...
Silicon anodes are of great interest for advanced lithium-ion battery applications due to their orde...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
High-density silicon composite anodes show large volume changes upon charging/discharging triggering...
Even though it has the highest known theoretical specific capacity of any material (~3600 mAh/g), si...
The surface reactions of electrolytes with a silicon anode in lithium ion cells have been investigat...
Over the last 25 years, the performance increase of lithium-ion batteries has been largely driven by...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
The solid electrolyte interphase (SEI) is a key component of a lithium-ion battery forming during th...
Chemical and structural modifications occurring in homogeneous crystalline Si nanoparticles (NPs) us...
To gain new insights into the formation of the solid electrolyte interphase (SEI), as a basis for th...
International audiencePerformant electrochemical storage devices appear as one of the solution to fa...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...