Silicon is considered one of the most promising anode materials for high-performance Li-ion batteries due to its 4200 mAh/g theoretical specific capacity, relative abundance, low cost, and environmental benignity. However, silicon experiences a dramatic volume change (∼300%) during full charge/discharge cycling, leading to severe capacity decay and poor cycling stability. Here, we report a three-dimensional (3D) ternary silicon nanoparticles/conducting polymer/carbon nanotubes hybrid anode material for Li-ion batteries. The hierarchical conductive hydrogel framework with carbon nanotubes as the electronic fortifier offers a continuous electron transport network and high porosity to accommodate the volume expansion of Si particles. By 3D wra...
Despite remarkable progress, lithium ion batteries still need higher energy density and better cycle...
A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically ali...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
The increasing concern about global energy crisis and continuing deteriorating environmental issues ...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
Silicon, the most prospecting anode material for lithium batteries, has been receiving enormous atte...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
Silicon can play a central role in the next generation Li-ion batteries. Certainly, silicon’s advant...
The radical change in the global economy demands lithium-ion batteries (LIBs) with improved energy d...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
A prototype 3-dimensional (3D) anode, based on multiwall carbon nanotubes (MWCNTs), for Li-ion batte...
A high-capacity Si anode is always accompanied by very large volume expansion and structural collaps...
Despite remarkable progress, lithium ion batteries still need higher energy density and better cycle...
A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically ali...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
The increasing concern about global energy crisis and continuing deteriorating environmental issues ...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
Silicon, the most prospecting anode material for lithium batteries, has been receiving enormous atte...
Carbon nanotubes, in different forms and architectures, have demonstrated good promise as electrode ...
International audienceThe concept of a hybrid nanostructured collector made of thin vertically align...
Silicon can play a central role in the next generation Li-ion batteries. Certainly, silicon’s advant...
The radical change in the global economy demands lithium-ion batteries (LIBs) with improved energy d...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
A prototype 3-dimensional (3D) anode, based on multiwall carbon nanotubes (MWCNTs), for Li-ion batte...
A high-capacity Si anode is always accompanied by very large volume expansion and structural collaps...
Despite remarkable progress, lithium ion batteries still need higher energy density and better cycle...
A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically ali...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...