International audienceThe electrochemical and structural responses of silicon nanowires deposited by chemical vapor deposition are investigated. Transmission electron microscopy and X-ray diffraction experiments show the electrochemical lithiation of SiNWs is not a quantitative process in good agreement with cycling experiments performed as a function of cycling limits. The SiNWs are not deeply lithiated as revealed by TEM micrographs. Our results suggest the existence of two well-defined lithiation steps, first at ∼0.2 V into amorphous silicon and then into crystalline silicon at ∼0.1 V. Cycling SiNWs above 100 mV avoid the lithiation of c-Si which preserves the silicon 3-D architecture and results in good cycling performances. A stable ca...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe increasingly demand on secondary batteries with higher specific energy dens...
Silicon is one of the most interesting candidates to replace graphite as anode in Li-ion batteries f...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
Samples of silicon nanowire materials, produced by Merck KGaA via a batched supercritical fluid meth...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe electrochemical and structural responses of silicon nanowires deposited by...
International audienceThe increasingly demand on secondary batteries with higher specific energy dens...
Silicon is one of the most interesting candidates to replace graphite as anode in Li-ion batteries f...
Silicon is a promising anode material for Li-ion batteries due to its high theoretical specific capa...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
Samples of silicon nanowire materials, produced by Merck KGaA via a batched supercritical fluid meth...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising material for lithium-ion batteries. However, it expands by 300% on lithiation...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Nanostructured silicon anodes, which possess extremely high energy density and accommodate large str...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...