Silicon suffers from high volume variation and poor conductivity, which limits its commercial application in lithium-ion battery anode materials. To improve the stability of Si-based electrodes, the porous structure was designed for both Si and carbon fiber. Furthermore, heteroatom doping was adopted to enhance the conductivity of carbon fiber. Three freestanding porous silicon@heteroatom-doped porous carbon fiber was successfully prepared by coaxial electrospinning. The impact of sulfur/boron doping on the electrochemical properties of anodic materials is systematically researched. The porous structure of both silicon and carbon fiber efficiently relieves the volume expansion of silicon and provides diffusion channels for ion transportatio...
A porous silicon and carbon composite (PSi/C) with granadilla-like structure as an anode material fo...
We demonstrate a synthetic approach for highly ordered hexagonal mesoporous carbon nanofibers with b...
We demonstrate a cost-effective synthesis route that provides Si-based anode materials with capaciti...
We demonstrate a cross−linked, 3D conductive network structure, porous silicon@carbon nanofiber (P−S...
Lithium sulfur technology is a promising near-future battery owing to its high theoretical capacity ...
A novel porous Si/S-doped carbon composite was prepared by a magnesiothermic reaction of mesoporous ...
Silicon (Si)/carbon nanocomposites have attracted extensive interests as emerging electrode material...
Abstract All-solid-state batteries comprising Si anodes are promising materials for energy storage i...
The pores in silicon particles can accommodate the volume expansion of silicon during the charging&#...
In this work, a facile approach is reported to mass produce highly porous fibers constructed from si...
Porous carbons are an attractive material for electrochemical energy storage technologies due to the...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation...
In this paper, a cost-effective strategy for fabricating silicon-carbon composites was designed to f...
Silicon anode is a promising candidate for lithium ion batteries (LIBs). Unfortunately, its commerci...
Silicon (Si) is expected to be a high-energy anode for the next generation of lithium-ion batteries ...
A porous silicon and carbon composite (PSi/C) with granadilla-like structure as an anode material fo...
We demonstrate a synthetic approach for highly ordered hexagonal mesoporous carbon nanofibers with b...
We demonstrate a cost-effective synthesis route that provides Si-based anode materials with capaciti...
We demonstrate a cross−linked, 3D conductive network structure, porous silicon@carbon nanofiber (P−S...
Lithium sulfur technology is a promising near-future battery owing to its high theoretical capacity ...
A novel porous Si/S-doped carbon composite was prepared by a magnesiothermic reaction of mesoporous ...
Silicon (Si)/carbon nanocomposites have attracted extensive interests as emerging electrode material...
Abstract All-solid-state batteries comprising Si anodes are promising materials for energy storage i...
The pores in silicon particles can accommodate the volume expansion of silicon during the charging&#...
In this work, a facile approach is reported to mass produce highly porous fibers constructed from si...
Porous carbons are an attractive material for electrochemical energy storage technologies due to the...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation...
In this paper, a cost-effective strategy for fabricating silicon-carbon composites was designed to f...
Silicon anode is a promising candidate for lithium ion batteries (LIBs). Unfortunately, its commerci...
Silicon (Si) is expected to be a high-energy anode for the next generation of lithium-ion batteries ...
A porous silicon and carbon composite (PSi/C) with granadilla-like structure as an anode material fo...
We demonstrate a synthetic approach for highly ordered hexagonal mesoporous carbon nanofibers with b...
We demonstrate a cost-effective synthesis route that provides Si-based anode materials with capaciti...