We demonstrate a facile synthesis of micrometer-sized porous Si particles via copper-assisted chemical etching process. Subsequently, metal and/or metal silicide layers are introduced on the surface of porous Si particles using a simple chemical reduction process. Macroporous Si and metal/metal silicide-coated Si electrodes exhibit a high initial Coulombic efficiency of ∼90%. Reversible capacity of carbon-coated porous Si gradually decays after 80 cycles, while metal/metal silicide-coated porous Si electrodes show significantly improved cycling performance even after 100 cycles with a reversible capacity of >1500 mAh g<sup>–1</sup>. We confirm that a stable solid-electrolyte interface layer is formed on metal/metal silicide-coated porous Si...
Specific design and optimization of the configuration of micro-scale materials can effectively enhan...
High effort is currently being put into the capacity increase of lithium-ion batteries. Silicon is o...
We describe effective strategies to enhance the electrochemical performance of highly porous silicon...
We demonstrate a facile synthesis of micrometer-sized porous Si particles via copper-assisted chemic...
We report on the facile synthesis of porous silicon structure via magnesiothermic reduction followed...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
Three-dimensional porous silicon particles can be produced via the combination of a galvanic displac...
The development of silicon anodes for lithium-ion batteries has been largely impeded by poor interfa...
The nanostructured Si particles are synthesized by a silver-assisted catalytic etching process of co...
Silicon is a promising alloying anode for lithium-ion batteries because of its high capacity and low...
Nano-Si has been long-hampered in its use for practical lithium battery anodes due to its intrinsic ...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Control over porous electrode microstructure is critical for the continued improvement of electroche...
Microsized silicon powders have great potential for high capacity anode materials in next-generation...
Surface engineering of sponge-like Si particles is necessary to alleviate the large volume expansion...
Specific design and optimization of the configuration of micro-scale materials can effectively enhan...
High effort is currently being put into the capacity increase of lithium-ion batteries. Silicon is o...
We describe effective strategies to enhance the electrochemical performance of highly porous silicon...
We demonstrate a facile synthesis of micrometer-sized porous Si particles via copper-assisted chemic...
We report on the facile synthesis of porous silicon structure via magnesiothermic reduction followed...
Low coulombic efficiency and poor cyclic stability are two common problems for silicon anodes. There...
Three-dimensional porous silicon particles can be produced via the combination of a galvanic displac...
The development of silicon anodes for lithium-ion batteries has been largely impeded by poor interfa...
The nanostructured Si particles are synthesized by a silver-assisted catalytic etching process of co...
Silicon is a promising alloying anode for lithium-ion batteries because of its high capacity and low...
Nano-Si has been long-hampered in its use for practical lithium battery anodes due to its intrinsic ...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Control over porous electrode microstructure is critical for the continued improvement of electroche...
Microsized silicon powders have great potential for high capacity anode materials in next-generation...
Surface engineering of sponge-like Si particles is necessary to alleviate the large volume expansion...
Specific design and optimization of the configuration of micro-scale materials can effectively enhan...
High effort is currently being put into the capacity increase of lithium-ion batteries. Silicon is o...
We describe effective strategies to enhance the electrochemical performance of highly porous silicon...