Functionalized porous carbons are necessary for the reversible operation of lithium-sulfur batteries (LSBs), however, their appropriate utilization and physicochemical states in the sulfur cathode are still unclear. Although numerous studies regarding distribution of sulfur in the pores of the carbon framework in the cathode have been reported, sulfur distribution and oxygen coverage on the carbon surface after sulfur infiltration have not been clearly investigated. In this study, we scrutinized the role of the pores in the oxygen-functionalized mesoporous carbon nanoparticle (O-MCN). Furthermore, we elaborated sulfur distribution, oxygen coverage, and pore utilization of O-MCN under the three different sulfur infiltration process. The soft...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium-sulfur (Li-S)...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
© 2020 Wiley-VCH GmbH. Hierarchical mesoporous carbon was studied as a key material for enhancing su...
Lithium sulfur (Li-S) batteries have the potential to provide higher energy storage density at lower...
We investigate sulfur infiltration and formation of lower order allotropes in heated porous hosts du...
Ordered mesoporous CMK-5 carbon exhibits two distinct pore systems that can be modified individually...
Hierarchical porous carbon is often used in Li-S batteries due to the widely perceived benefits rega...
Two synthesis pathways are adopted to tune the microstructural characteristics of sulfur-carbon (S-C...
Porous carbon spheres with hybrid pore structure have been designed as a promising conducting framew...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
The "shuttle effect" in ether electrolyte or nucleophilic reaction in carbonate electrolyte are majo...
We report on sulfur-functionalized ordered mesoporous carbons aimed for lithium-sulfur battery elect...
Abstract A novel porous N-doped carbon microsphere (polymer-dopamine derived carbon, PDA-C) with hig...
Lithium sulfur batteries are one of the most promising next generation energy storage technologies,...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium-sulfur (Li-S)...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...
© 2020 Wiley-VCH GmbH. Hierarchical mesoporous carbon was studied as a key material for enhancing su...
Lithium sulfur (Li-S) batteries have the potential to provide higher energy storage density at lower...
We investigate sulfur infiltration and formation of lower order allotropes in heated porous hosts du...
Ordered mesoporous CMK-5 carbon exhibits two distinct pore systems that can be modified individually...
Hierarchical porous carbon is often used in Li-S batteries due to the widely perceived benefits rega...
Two synthesis pathways are adopted to tune the microstructural characteristics of sulfur-carbon (S-C...
Porous carbon spheres with hybrid pore structure have been designed as a promising conducting framew...
The lithium–sulfur battery has been under intense scrutiny for over two decades, due to the possibil...
The "shuttle effect" in ether electrolyte or nucleophilic reaction in carbonate electrolyte are majo...
We report on sulfur-functionalized ordered mesoporous carbons aimed for lithium-sulfur battery elect...
Abstract A novel porous N-doped carbon microsphere (polymer-dopamine derived carbon, PDA-C) with hig...
Lithium sulfur batteries are one of the most promising next generation energy storage technologies,...
The Li-S system offers a tantalizing battery for electric vehicles and renewable energy storage due ...
Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium-sulfur (Li-S)...
Despite the remarkably high theoretical energy density (∼2600 W h kg–1), lithium–sulfur (Li–S) batte...