Functionalized N-doped porous carbon nanofiber webs/sulfur (N-PCNF/S) composites are first proposed as the cathode materials for an advanced lithium–sulfur battery. The functionalized N-doped porous carbon nanofiber webs (N-PCNF) with an appropriate N doping (4.32 wt %) are synthesized by a facile approach, which consists of pyrolyzation of polypyrrole nanofiber and a subsequent KOH activation. Instrumental analysis shows that N-PCNF possesses a large specific surface area (2642 m<sup>2</sup> g<sup>–1</sup>) and a high inner pore volume (1.31 cm<sup>3</sup> g<sup>–1</sup>). When evaluating its electrochemical properties in a lithium–sulfur battery, the N-PCNF/S composite with 77.01 wt % sulfur content displays an excellent electrochemical p...
The conversion reaction-based lithium–sulfur battery features an attractive energy density of 2600 W...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Functionalized N-doped porous carbon nanofiber webs/sulfur (N-PCNF/S) composites are first proposed ...
In this study, the CeF<sub>3</sub>-doped porous carbon nanofibers (PCNFs), prepared via electroblown...
We demonstrate a synthetic approach for highly ordered hexagonal mesoporous carbon nanofibers with b...
Low sulfur utilization and poor cycle life of the sulfur cathode with high sulfur loadings remain a ...
Flexible N-doped porous carbon nanofibers embedded with TiN nanoparticles are prepared for cathode m...
Sulfur is a promising cathode material for lithium batteries as it possesses high theoretical specif...
Hollow carbon nanofiber@nitrogen-doped porous carbon (HCNF@NPC) coaxial-cable structure composite, w...
Significant challenges for the commercialization of a lithium-sulfur battery include its rapid capac...
Free-standing paper cathodes with layer-by-layer structure are synthesized for high-loading lithium–...
We demonstrate here a novel strategy to prepare a flexible and free-standing sulfur cathode with imp...
In the current work, we combined different physical and chemical modifications of carbon nanofibers ...
Nitrogen-doped carbon (NDC) spheres with abundant 22 nm mesopores and 0.5 nm micropores are obtained...
The conversion reaction-based lithium–sulfur battery features an attractive energy density of 2600 W...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
Functionalized N-doped porous carbon nanofiber webs/sulfur (N-PCNF/S) composites are first proposed ...
In this study, the CeF<sub>3</sub>-doped porous carbon nanofibers (PCNFs), prepared via electroblown...
We demonstrate a synthetic approach for highly ordered hexagonal mesoporous carbon nanofibers with b...
Low sulfur utilization and poor cycle life of the sulfur cathode with high sulfur loadings remain a ...
Flexible N-doped porous carbon nanofibers embedded with TiN nanoparticles are prepared for cathode m...
Sulfur is a promising cathode material for lithium batteries as it possesses high theoretical specif...
Hollow carbon nanofiber@nitrogen-doped porous carbon (HCNF@NPC) coaxial-cable structure composite, w...
Significant challenges for the commercialization of a lithium-sulfur battery include its rapid capac...
Free-standing paper cathodes with layer-by-layer structure are synthesized for high-loading lithium–...
We demonstrate here a novel strategy to prepare a flexible and free-standing sulfur cathode with imp...
In the current work, we combined different physical and chemical modifications of carbon nanofibers ...
Nitrogen-doped carbon (NDC) spheres with abundant 22 nm mesopores and 0.5 nm micropores are obtained...
The conversion reaction-based lithium–sulfur battery features an attractive energy density of 2600 W...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...