Porous carbon spheres with hybrid pore structure have been designed as a promising conducting framework to be used in cathode material for lithium?sulfur batteries. By creating three-dimensionally interconnected micropores and mesopores, sufficient space for sulfur storage, as well as electrolyte pathways, can be secured in the carbon spheres. Sulfur is mainly confined in mesopores with diameters of a few tens of nanometers in the carbon spheres and separated on the mesoscopic domain, which is advantageous for enhancing charge transfer and effectively accommodating volume expansion of sulfur during electrochemical reactions with Li+. The important role of the micropores, with diameters of less than 2 nm, is to extend effective interfacial c...
For lithium–sulfur batteries, commercial application is hindered by the insulating nature of sulfur ...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Despite intensive research on porous carbon materials as hosts for sulfur in lithium-sulfur battery ...
Hierarchically porous hollow carbon spheres with an indented void structure have been designed as ho...
Porous carbons are an attractive material for electrochemical energy storage technologies due to the...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
Going into their shell: A novel carbon–sulfur nanocomposite has been synthesized by confining sulfur...
Going into their shell: A novel carbon–sulfur nanocomposite has been synthesized by confining sulfur...
University of Technology Sydney. Faculty of Science.Rechargeable energy storage devices are being se...
Core-shell hierarchical porous carbon spheres (HPCs) were synthesized by a facile hydrothermal metho...
Lithium-sulfur batteries have drawn a lot of attentions due to the high theoretical discharge capaci...
Abstract Mesoporous carbon (MC) spheres with hierarchical pores, controlled pore volume and high spe...
We report engineered hollow core–shell interlinked carbon spheres that consist of a mesoporous shell...
Lithium–sulfur (Li–S) batteries are deemed to be a promising energy storage device for next-generati...
For lithium–sulfur batteries, commercial application is hindered by the insulating nature of sulfur ...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Despite intensive research on porous carbon materials as hosts for sulfur in lithium-sulfur battery ...
Hierarchically porous hollow carbon spheres with an indented void structure have been designed as ho...
Porous carbons are an attractive material for electrochemical energy storage technologies due to the...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
Going into their shell: A novel carbon–sulfur nanocomposite has been synthesized by confining sulfur...
Going into their shell: A novel carbon–sulfur nanocomposite has been synthesized by confining sulfur...
University of Technology Sydney. Faculty of Science.Rechargeable energy storage devices are being se...
Core-shell hierarchical porous carbon spheres (HPCs) were synthesized by a facile hydrothermal metho...
Lithium-sulfur batteries have drawn a lot of attentions due to the high theoretical discharge capaci...
Abstract Mesoporous carbon (MC) spheres with hierarchical pores, controlled pore volume and high spe...
We report engineered hollow core–shell interlinked carbon spheres that consist of a mesoporous shell...
Lithium–sulfur (Li–S) batteries are deemed to be a promising energy storage device for next-generati...
For lithium–sulfur batteries, commercial application is hindered by the insulating nature of sulfur ...
Lithium-sulfur (Li-S) batteries are regarded as potential high-energy storage devices due to their o...
Despite intensive research on porous carbon materials as hosts for sulfur in lithium-sulfur battery ...