The nanostructure design of a prereserved hollow space to accommodate 300% volume change of silicon anodes has created exciting promises for high-energy batteries. However, challenges with weak mechanical stability during the calendering process of electrode fabrication and poor volumetric energy density remain to be solved. Here we fabricated a pressure-resistant silicon structure by designing a dense silicon shell coating on secondary micrometer particles, each consisting of many silicon nanoparticles. The silicon skin layer significantly improves mechanical stability, while the inner porous structure efficiently accommodates the volume expansion. Such a structure can resist a high pressure of over 100 MPa and is well-maintained after the...
To be a thinner and more lightweight lithium-ion battery with high energy density, the next-generati...
Graphite-like coated silicon (Si@G) material has been shown to be only partly useful in addressing t...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
The nanostructure design of a prereserved hollow space to accommodate 300% volume change of silicon ...
The nanostructure design of a prereserved hollow space to accommodate 300% volume change of silicon ...
There has recently been an increasing volume of research in silicon-based anodes for high energy den...
Si has been recognized as a next-generation anode alternative to graphite for high-energy-density li...
Silicon is regarded as one of the most promising anode materials for next generation lithium-ion bat...
Silicon is a promising anode material in high energy density application of lithium ion batteries be...
ABSTRACT: Silicon is regarded as one of the most promising anode materials for next generation lithi...
Silicon has attracted huge attention in the last decade as the anode material for Li-ion batteries b...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
The use of high-capacity anode materials to overcome the energy density limits imposed by the utiliz...
Graphite-like coated silicon (Si@G) material has been shown to be only partly useful in addressing t...
To be a thinner and more lightweight lithium-ion battery with high energy density, the next-generati...
Graphite-like coated silicon (Si@G) material has been shown to be only partly useful in addressing t...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...
The nanostructure design of a prereserved hollow space to accommodate 300% volume change of silicon ...
The nanostructure design of a prereserved hollow space to accommodate 300% volume change of silicon ...
There has recently been an increasing volume of research in silicon-based anodes for high energy den...
Si has been recognized as a next-generation anode alternative to graphite for high-energy-density li...
Silicon is regarded as one of the most promising anode materials for next generation lithium-ion bat...
Silicon is a promising anode material in high energy density application of lithium ion batteries be...
ABSTRACT: Silicon is regarded as one of the most promising anode materials for next generation lithi...
Silicon has attracted huge attention in the last decade as the anode material for Li-ion batteries b...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
The use of high-capacity anode materials to overcome the energy density limits imposed by the utiliz...
Graphite-like coated silicon (Si@G) material has been shown to be only partly useful in addressing t...
To be a thinner and more lightweight lithium-ion battery with high energy density, the next-generati...
Graphite-like coated silicon (Si@G) material has been shown to be only partly useful in addressing t...
Silicon (Si) is a promising anode material for next-generation Li-ion batteries. The nanometer-sized...