Porous graphitic carbon of high specific surface area of 1416 m<sup>2</sup> g<sup>–1</sup> and high pore volume of 1.11 cm<sup>3</sup> g<sup>–1</sup> is prepared by using commercial CaCO<sub>3</sub> nanoparticles as template and sucrose as carbon source followed by 1200 °C high-temperature calcination. Sulfur/porous graphitic carbon composites with ultra high sulfur loading of 88.9 wt % (88.9%S/PC) and lower sulfur loading of 60.8 wt % (60.8%S/PC) are both synthesized by a simple melt-diffusion strategy, and served as cathode of rechargeable lithium–sulfur batteries. In comparison with the 60.8%S/PC, the 88.9%S/PC exhibits higher overall discharge capacity of 649.4 mAh g<sup>–1</sup><sub>(S–C)</sub>, higher capacity retention of 84.6% and b...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
A microporous–mesoporous carbon has been successfully prepared via carbonization of sucrose followed...
An upgrade of the scalable fabrication of high-performance sulfur-carbon cathodes is essential for t...
Special Funds for Major State Basic Research Project of China [2009CB220102, 2011AA11A254]; NSFC [21...
Lithium–sulfur (Li–S) batteries are deemed to be a promising energy storage device for next-generati...
University of Technology Sydney. Faculty of Science.Rechargeable energy storage devices are being se...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation ...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation ...
Because of advantages such as excellent electronic conductivity, high theoretical specific surface a...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
The lithium–sulfur battery (LSB) is a promising candidate for future energy storage but faces techno...
To mitigate the shuttle effect and enhance the electrical conductivity in lithium battery cathode, t...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
A microporous–mesoporous carbon has been successfully prepared via carbonization of sucrose followed...
An upgrade of the scalable fabrication of high-performance sulfur-carbon cathodes is essential for t...
Special Funds for Major State Basic Research Project of China [2009CB220102, 2011AA11A254]; NSFC [21...
Lithium–sulfur (Li–S) batteries are deemed to be a promising energy storage device for next-generati...
University of Technology Sydney. Faculty of Science.Rechargeable energy storage devices are being se...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation ...
The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation ...
Because of advantages such as excellent electronic conductivity, high theoretical specific surface a...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
The lithium–sulfur battery (LSB) is a promising candidate for future energy storage but faces techno...
To mitigate the shuttle effect and enhance the electrical conductivity in lithium battery cathode, t...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and me...
A microporous–mesoporous carbon has been successfully prepared via carbonization of sucrose followed...
An upgrade of the scalable fabrication of high-performance sulfur-carbon cathodes is essential for t...