Surface engineering of sponge-like Si particles is necessary to alleviate the large volume expansion of Si during the lithiation-delithiation process and to mitigate the unwanted interfacial reactions upon cycling. The sponge-like Si structuring and introduction of double layers consisting of carbon and polyimide enabled us to make high performance Si anode materials exhibiting a high specific capacity and highly stable cycling.close8
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Silicon is a potential high-capacity anode material for lithium-ion batteries. However, the large vo...
Amorphous silicon nanoparticles were synthesized through pyrolysis of silane gas at temperatures ran...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
Silicon is being increasingly studied as the next-generation anode material for Li-ion batteries bec...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Silicon is being increasingly studied as the next-generation anode material for Li-ion batteries bec...
We demonstrate a facile synthesis of micrometer-sized porous Si particles via copper-assisted chemic...
Si nanoparticles (SiNPs) are recognized as a promising anode material for next-generation high-energ...
Lithium-ion batteries (LIBs) are promising energy storage systems for electric vehicles (EVs) and hy...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Nanosized silicon (Si) has been widely investigated as a promising material for next generation lith...
ABSTRACT: Silicon is a promising high-capacity anode material for lithium-ion batteries yet attainin...
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Silicon is a potential high-capacity anode material for lithium-ion batteries. However, the large vo...
Amorphous silicon nanoparticles were synthesized through pyrolysis of silane gas at temperatures ran...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
Silicon is being increasingly studied as the next-generation anode material for Li-ion batteries bec...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Silicon is being increasingly studied as the next-generation anode material for Li-ion batteries bec...
We demonstrate a facile synthesis of micrometer-sized porous Si particles via copper-assisted chemic...
Si nanoparticles (SiNPs) are recognized as a promising anode material for next-generation high-energ...
Lithium-ion batteries (LIBs) are promising energy storage systems for electric vehicles (EVs) and hy...
International audienceDue to its high capacity compared to graphite, silicon has attracted attention...
Nanosized silicon (Si) has been widely investigated as a promising material for next generation lith...
ABSTRACT: Silicon is a promising high-capacity anode material for lithium-ion batteries yet attainin...
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Silicon is a potential high-capacity anode material for lithium-ion batteries. However, the large vo...