International audienceSilicon (Si) is the most promising anode candidate for the next generation of lithium-ion batteries but difficult to cycle due to its poor electronic conductivity and large volume change during cycling. Nanostructured Si-based materials allow high loading and cycling stability but remain a challenge for process and engineering. We prepare a Si nanowires-grown-on-graphite one-pot composite (Gt-SiNW) via a simple and scalable route. The uniform distribution of SiNW and the graphite flakes alignment prevent electrode pulverization and accommodate volume expansion during cycling, resulting in very low electrode swelling. Our designed nano-architecture delivers outstanding electrochemical performance with a capacity retenti...
Existing anode technologies are approaching their limits, and silicon is recognized as a potential a...
A novel one-pot synthesis for the subeutectic growth of (111) oriented Si nanowires on an in situ fo...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
International audienceSilicon (Si) is the most promising anode candidate for the next generation of ...
A novel architecture consisting of Si nanowires internally grown from porous graphite is synthesized...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
A novel architecture consisting of Si nanowires internally grown from porous graphite is synthesized...
International audienceSilicon nanowires are appealing structures to enhance the capacity of anodes i...
Si is a promising anode material for Li storage due to its high theoretical specific capacity surpas...
Silicon (Si) nanomaterials have emerged as a leading candidate for next generation lithium-ion batte...
The nanostructuring of silicon (Si) has recently received great attention, as it holds potential to ...
Silicon nanowires are appealing structures to enhance the capacity of anodes in lithium-ion batterie...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Alloy anodes possessed of high theoretical capacity show great potential for next-generation advance...
As the power demands of mobile technologies continue to increase, lithium-ion batteries are needed w...
Existing anode technologies are approaching their limits, and silicon is recognized as a potential a...
A novel one-pot synthesis for the subeutectic growth of (111) oriented Si nanowires on an in situ fo...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
International audienceSilicon (Si) is the most promising anode candidate for the next generation of ...
A novel architecture consisting of Si nanowires internally grown from porous graphite is synthesized...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
A novel architecture consisting of Si nanowires internally grown from porous graphite is synthesized...
International audienceSilicon nanowires are appealing structures to enhance the capacity of anodes i...
Si is a promising anode material for Li storage due to its high theoretical specific capacity surpas...
Silicon (Si) nanomaterials have emerged as a leading candidate for next generation lithium-ion batte...
The nanostructuring of silicon (Si) has recently received great attention, as it holds potential to ...
Silicon nanowires are appealing structures to enhance the capacity of anodes in lithium-ion batterie...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Alloy anodes possessed of high theoretical capacity show great potential for next-generation advance...
As the power demands of mobile technologies continue to increase, lithium-ion batteries are needed w...
Existing anode technologies are approaching their limits, and silicon is recognized as a potential a...
A novel one-pot synthesis for the subeutectic growth of (111) oriented Si nanowires on an in situ fo...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...