Specific design and optimization of the configuration of micro-scale materials can effectively enhance battery performance, including volumetric density. Herein, we employed commercially available low-cost bulk silicon powder to produce multi-dimensional silicon composed of porous nanowires and micro-sized cores, which can be used as anode materials in lithium-ion batteries, by combining a metal deposition and metal-assisted chemical etching process. Nanoporous silicon nanowires of 5-8 mu m in length and with a pore size of similar to 10 nm are formed in the bulk silicon particle. The silicon electrodes having multi-dimensional structures accommodate large volume changes of silicon during lithium insertion and extraction. These materials sh...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Extremely cheap mesoporous silicon nanowires by metal-assisted chemical etching of inexpensive metal...
Commercial micrometer silicon (Si) powder was investigated as a potential anode material for lithium...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
We present a simple, mass production of nonporous and nanoporous silicon nanowire anodes by combinin...
We describe a simple process for synthesizing three-dimensional porous silicon monoxide anode materi...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Three-dimensional porous silicon particles can be produced via the combination of a galvanic displac...
Silicon nanowires were fabricated by a metal assisted chemical (MAC) etching process and routes towa...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
Silicon (Si) has been considered as one of the most promising candidates for the next-generation lit...
Silicon-based nanostructures were synthesized and characterized with the ultimate aim of creating a ...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Extremely cheap mesoporous silicon nanowires by metal-assisted chemical etching of inexpensive metal...
Commercial micrometer silicon (Si) powder was investigated as a potential anode material for lithium...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
We present a simple, mass production of nonporous and nanoporous silicon nanowire anodes by combinin...
We describe a simple process for synthesizing three-dimensional porous silicon monoxide anode materi...
2015-01-29Lithium-ion battery has generated great impacts on portable electronics since its first co...
Three-dimensional porous silicon particles can be produced via the combination of a galvanic displac...
Silicon nanowires were fabricated by a metal assisted chemical (MAC) etching process and routes towa...
MasterThe size of anode materials is closely related with Li-ion battery performance. In nano-size s...
Silicon (Si) has been considered as one of the most promising candidates for the next-generation lit...
Silicon-based nanostructures were synthesized and characterized with the ultimate aim of creating a ...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
International audienceSilicon nanowires were first produced by lithography or CVD for electronics, s...
Silicon is a promising anode material in lithium batteries due to its high specific capacity and low...
Extremely cheap mesoporous silicon nanowires by metal-assisted chemical etching of inexpensive metal...
Commercial micrometer silicon (Si) powder was investigated as a potential anode material for lithium...