Sulfur electrodes confined in an inert carbon matrix show practical limitations and concerns related to low cathode density. As a result, these electrodes require a large amount of electrolyte, normally three times more than the volume used in commercial Li-ion batteries. Herein, a high-energy and high-performance lithium–sulfur battery concept, designed to achieve high practical capacity with minimum volume of electrolyte is proposed. It is based on deposition of polysulfide species on a self-standing and highly conductive carbon nanofiber network, thus eliminating the need for a binder and current collector, resulting in high active material loading. The fiber network has a functionalized surface with the presence of polar oxygen groups, ...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...
Sulfur electrodes confined in an inert carbon matrix show practical limitations and concerns related...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
Over the last decade, lithium–sulfur (Li–S) batteries have been extensively studied because of the a...
We report on a new strategy to improve the capacity, reduce the manufacturing costs and increase the...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
Li–S batteries have been extensively studied using rigid carbon as the host for sulfur encapsulation...
We report a new Li–S cell concept based on an optimized F-free catholyte solution and a high loading...
Developing lithium–sulfur cells with a high-loading cathode at a lean-electrolyte condition is the k...
We report a new Li–S cell concept based on an optimized F-free catholyte solution and a high loading...
Shuttle effect has always been a critical obstacle to the application of lithium–sulfur (Li–S) batte...
Lithium-sulfur (Li-S) batteries have been receiving great recognition for the past few years. This i...
As the world faces a growing need to electrify and reduce carbon emissions, batteries offer much nee...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...
Sulfur electrodes confined in an inert carbon matrix show practical limitations and concerns related...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
Over the last decade, lithium–sulfur (Li–S) batteries have been extensively studied because of the a...
We report on a new strategy to improve the capacity, reduce the manufacturing costs and increase the...
Nanostructural design renders several breakthroughs for the construction of high-performance materia...
Li–S batteries have been extensively studied using rigid carbon as the host for sulfur encapsulation...
We report a new Li–S cell concept based on an optimized F-free catholyte solution and a high loading...
Developing lithium–sulfur cells with a high-loading cathode at a lean-electrolyte condition is the k...
We report a new Li–S cell concept based on an optimized F-free catholyte solution and a high loading...
Shuttle effect has always been a critical obstacle to the application of lithium–sulfur (Li–S) batte...
Lithium-sulfur (Li-S) batteries have been receiving great recognition for the past few years. This i...
As the world faces a growing need to electrify and reduce carbon emissions, batteries offer much nee...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
For practical application of lithium–sulfur batteries (LSBs), it is crucial to develop sulfur cathod...
The rapid development of wireless electronic devices, electric vehicles and grid storage has brought...