Semi-liquid catholyte Lithium−Sulfur (Li−S) cells have shown to be a promising path to realize high energy density energy storage devices. In general, Li−S cells rely on the conversion of elemental sulfur to soluble polysulfide species. In the case of catholyte cells, the active material is added through polysulfide species dissolved in the electrolyte. Herein, we use operando Raman spectroscopy to track the speciation and migration of polysulfides in the catholyte to shed light on the processes taking place. Combined with ex-situ surface and electrochemical analysis we show that the migration of polysulfides is central in order to maximize the performance in terms of capacity (active material utilization) as well as interphase stability on...
Semi-liquid configuration of sulfur cell is proposed as simple strategy to develop high-energy lith...
The lithium-sulfur (Li-S) battery is one of the most promising candidates in next generation energy ...
The lithium-sulfur (Li-S) couple is one of the most promising chemistries for realizing the next gen...
Semi-liquid catholyte Lithium−Sulfur (Li−S) cells have shown to be a promising path to realize high ...
As the demand for high energy-density storage devices increases, we must look beyond the current sta...
In the field of energy storage technology, the lithium sulfur battery is intensely studied in intere...
Lithium sulfur batteries have garnered a significant amount of attention as a next-generation energy...
In this work, light is shed on the dissolution and precipitation processes S8 and Li2S, and their ro...
Lithium-sulfur (Li-S) batteries have been considered as an attractive alternative to current Li-ion ...
The direct synthesis of Li2 S2 , a proposed solid intermediate in the discharge of lithium-sulfur (L...
Li-S batteries are promising energy storage technology for the future, however there two major probl...
The lithium/sulfur battery is a promising electrochemical system that has a high theoretical capacit...
Lithium-sulfur (Li−S) batteries are recognized as one of the most promising technologies with the po...
Given the great promise of lithium-sulfur (Li−S) batteries as next-generation high-capacity energy s...
The polysulfides shuttle effect represents a great challenge in achieving high capacity and long lif...
Semi-liquid configuration of sulfur cell is proposed as simple strategy to develop high-energy lith...
The lithium-sulfur (Li-S) battery is one of the most promising candidates in next generation energy ...
The lithium-sulfur (Li-S) couple is one of the most promising chemistries for realizing the next gen...
Semi-liquid catholyte Lithium−Sulfur (Li−S) cells have shown to be a promising path to realize high ...
As the demand for high energy-density storage devices increases, we must look beyond the current sta...
In the field of energy storage technology, the lithium sulfur battery is intensely studied in intere...
Lithium sulfur batteries have garnered a significant amount of attention as a next-generation energy...
In this work, light is shed on the dissolution and precipitation processes S8 and Li2S, and their ro...
Lithium-sulfur (Li-S) batteries have been considered as an attractive alternative to current Li-ion ...
The direct synthesis of Li2 S2 , a proposed solid intermediate in the discharge of lithium-sulfur (L...
Li-S batteries are promising energy storage technology for the future, however there two major probl...
The lithium/sulfur battery is a promising electrochemical system that has a high theoretical capacit...
Lithium-sulfur (Li−S) batteries are recognized as one of the most promising technologies with the po...
Given the great promise of lithium-sulfur (Li−S) batteries as next-generation high-capacity energy s...
The polysulfides shuttle effect represents a great challenge in achieving high capacity and long lif...
Semi-liquid configuration of sulfur cell is proposed as simple strategy to develop high-energy lith...
The lithium-sulfur (Li-S) battery is one of the most promising candidates in next generation energy ...
The lithium-sulfur (Li-S) couple is one of the most promising chemistries for realizing the next gen...