Stability and high energy densities are essential qualities for emerging battery electrodes. Because of its high specific capacity, silicon has been considered a promising anode candidate. However, the several-fold volume changes during lithiation and delithiation leads to fractures and continuous formation of an unstable solid-electrolyte interphase (SEI) layer, resulting in rapid capacity decay. Here, we present a carbon–silicon–carbon (C@Si@C) nanotube sandwich structure that addresses the mechanical and chemical stability issues commonly associated with Si anodes. The C@Si@C nanotube array exhibits a capacity of ∼2200 mAh g<sup>–1</sup> (∼750 mAh cm<sup>–3</sup>), which significantly exceeds that of a commercial graphite anode, and a ne...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
The large capacity loss and huge volume change of silicon anodes severely restricts their practical ...
Abstract(#br)Micrometer-sized silicon powders, due to its high specific capacity, easy accessibility...
Stability and high energy densities are essential qualities for emerging battery electrodes. Because...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Despite remarkable progress, lithium ion batteries still need higher energy density and better cycle...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
In this technological advanced age, electronic gadgets have become necessities and its services have...
Silicon has been regarded as an attractive high-capacity anode material for next-generation lithium-...
Silicon-based materials present high theoretical capacities (4200 mAh/g), making them among the most...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
Silicon has received high interest as an anode material for lithium ion batteries due to its large t...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
We present Si nanotubes prepared by reductive decomposition of a silicon precursor in an alumina tem...
Silicon is a promising anode material for lithium ion batteries due to its low discharge potential a...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
The large capacity loss and huge volume change of silicon anodes severely restricts their practical ...
Abstract(#br)Micrometer-sized silicon powders, due to its high specific capacity, easy accessibility...
Stability and high energy densities are essential qualities for emerging battery electrodes. Because...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Despite remarkable progress, lithium ion batteries still need higher energy density and better cycle...
Silicon is a promising candidate for electrodes in lithium ion batteries due to its large theoretica...
In this technological advanced age, electronic gadgets have become necessities and its services have...
Silicon has been regarded as an attractive high-capacity anode material for next-generation lithium-...
Silicon-based materials present high theoretical capacities (4200 mAh/g), making them among the most...
Silicon exhibits the largest known capacity for Li insertion in anodes of Li-ion batteries. However,...
Silicon has received high interest as an anode material for lithium ion batteries due to its large t...
International audienceSilicon is one of the most promising anode materials for Lithium-ion batteries...
We present Si nanotubes prepared by reductive decomposition of a silicon precursor in an alumina tem...
Silicon is a promising anode material for lithium ion batteries due to its low discharge potential a...
We demonstrate a new kind of Si-based anode architectures consisting of silicon nanowire/overlapped ...
The large capacity loss and huge volume change of silicon anodes severely restricts their practical ...
Abstract(#br)Micrometer-sized silicon powders, due to its high specific capacity, easy accessibility...