peer-reviewedSilicon nanowires (Si NWs) are a promising anode material for lithiumion batteries (LIBs) due to their high specific capacity. Achieving adequate mass loadings for binder-free Si NWs is restricted by low surface area, mechanically unstable and poorly conductive current collectors (CCs), as well as complicated/expensive fabrication routes. Herein, a tunable mass loading and dense Si NW growth on a conductive, flexible, fire-resistant, and mechanically robust interwoven stainless-steel fiber cloth (SSFC) using a simple glassware setup is reported. The SSFC CC facilitates dense growth of Si NWs where its open structure allows a buffer space for expansion/ contraction during Li-cycling. The Si NWs@SSFC anode displays a sta...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
peer-reviewedThe full text of this article will not be available in ULIR until the embargo expires o...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
As the power demands of mobile technologies continue to increase, lithium-ion batteries are needed w...
Si is a promising anode material for Li storage due to its high theoretical specific capacity surpas...
This study fabricated and demonstrated a functional, stable electrode structure for a high capacity ...
peer-reviewedThe full text of this article will not be available in ULIR until the embargo expires o...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
International audienceSilicon (Si) is the most promising anode candidate for the next generation of ...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Lithium-ion batteries (LIBs) is believed to be one of the most promising alternatives to non-renewab...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
Silicon (Si) nanowires (NWs) grown on stainless-steel substrates by Cu-catalysed Chemical Vapour Dep...
peer-reviewedThe full text of this article will not be available in ULIR until the embargo expires o...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
As the power demands of mobile technologies continue to increase, lithium-ion batteries are needed w...
Si is a promising anode material for Li storage due to its high theoretical specific capacity surpas...
This study fabricated and demonstrated a functional, stable electrode structure for a high capacity ...
peer-reviewedThe full text of this article will not be available in ULIR until the embargo expires o...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
International audienceSilicon (Si) is the most promising anode candidate for the next generation of ...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Lithium-ion batteries (LIBs) is believed to be one of the most promising alternatives to non-renewab...
Silicon is well known as a very promising anode material because it has an extremely high theoretica...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...