A novel composite of sulfur immobilized into porous N-doped carbon microspheres (NCMSs-S) was synthesized. This composite cathode for lithium-sulfur batteries delivers a high specific capacity and superior rate capability and cycle stability, with a reversible capacity of similar to 605 mA h g(-1) at 2 C and 85% capacity retention after 500 cycles
Lithium-sulfur batteries are regarded as a promising energy storage system. However, they are plague...
Novel hierarchically porous carbon materials with very high surface areas, large pore volumes and hi...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
An upgrade of the scalable fabrication of high-performance sulfur-carbon cathodes is essential for t...
A sulfur/carbon composite with a hollow cagelike configuration is synthesized and employed as a lith...
Despite the promising high energy density at low cost, lithium sulfur batteries suffer from the fata...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Sulfur is a promising cathode material for secondary Li-S batteries for its high theoretic capacity ...
Despite intensive research on porous carbon materials as hosts for sulfur in lithium-sulfur battery ...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Hierarchically porous hollow carbon spheres with an indented void structure have been designed as ho...
Nitrogen and sulfur co-doped hierarchical porous carbon (N, S-HPC) is synthesized by using polyanili...
© the Partner Organisations 2014. Lithium-sulfur batteries are regarded as a promising energy storag...
Sulfur-carbon (S-C-MWCNTs) composites and sulfur-LiFePO4 (S-LFP-MWCNTs) composites were synthesised ...
Abstract Sulfur is a promising cathode material with a high theoretical capacity of 1672 mAh g-1, bu...
Lithium-sulfur batteries are regarded as a promising energy storage system. However, they are plague...
Novel hierarchically porous carbon materials with very high surface areas, large pore volumes and hi...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
An upgrade of the scalable fabrication of high-performance sulfur-carbon cathodes is essential for t...
A sulfur/carbon composite with a hollow cagelike configuration is synthesized and employed as a lith...
Despite the promising high energy density at low cost, lithium sulfur batteries suffer from the fata...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Sulfur is a promising cathode material for secondary Li-S batteries for its high theoretic capacity ...
Despite intensive research on porous carbon materials as hosts for sulfur in lithium-sulfur battery ...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Hierarchically porous hollow carbon spheres with an indented void structure have been designed as ho...
Nitrogen and sulfur co-doped hierarchical porous carbon (N, S-HPC) is synthesized by using polyanili...
© the Partner Organisations 2014. Lithium-sulfur batteries are regarded as a promising energy storag...
Sulfur-carbon (S-C-MWCNTs) composites and sulfur-LiFePO4 (S-LFP-MWCNTs) composites were synthesised ...
Abstract Sulfur is a promising cathode material with a high theoretical capacity of 1672 mAh g-1, bu...
Lithium-sulfur batteries are regarded as a promising energy storage system. However, they are plague...
Novel hierarchically porous carbon materials with very high surface areas, large pore volumes and hi...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...