In this work, valence-to-core (VtC) Kβ sulfur X-ray emission spectroscopy (XES) was used to perform quantitative analysis of different sulfur compounds produced in a lithium sulfur (Li–S) battery during discharge. The analysis is based on the theoretical sulfur Kβ XES spectra obtained from ab initio quantum chemical calculations based on density functional theory. The emphasis is given to the Kβ sulfur XES spectra of the polysulfide molecules (Li2Sx, x = 2,…,8) produced electrochemically within the Li–S battery. Ab initio molecular dynamics calculations are used further to calculate also the Kβ spectra of Li2Sx dissolved in a model solvent. Calculated spectra were directly compared with the experimental ones collected with a Johansson type ...
The X-ray absorption spectroscopy technique has been applied to study different stages of the lithiu...
Lithium-sulfur batteries have a theoretical specific energy that is a factor of five greater than th...
The lithium–sulfur battery is a promising system for the future generation of rechargeable batteries...
Sulfur based batteries are considered as very attractive energy storage devices. Sulfur is one of th...
The presence and role of polysulfide radicals in the electrochemical processes of lithium sulfur (Li...
We investigated the reduction process of sulfur during cycling in a lithium–sulfur battery, correlat...
The X-ray absorption spectra (XAS) of lithium polysulfides (Li2Sx) of various chain lengths (x) diss...
The identification and quantification of species involved in the electrochemical reactions of lithiu...
International audienceLi-S batteries are promising energy storage technology for the future, however...
International audienceIn a lithium/sulfur (Li/S) battery, the reduction of sulfur along discharge in...
Lithium sulfur batteries have garnered a significant amount of attention as a next-generation energy...
The X-ray absorption spectroscopy technique has been applied to study different stages of the lithiu...
Lithium-sulfur batteries have a theoretical specific energy that is a factor of five greater than th...
The lithium–sulfur battery is a promising system for the future generation of rechargeable batteries...
Sulfur based batteries are considered as very attractive energy storage devices. Sulfur is one of th...
The presence and role of polysulfide radicals in the electrochemical processes of lithium sulfur (Li...
We investigated the reduction process of sulfur during cycling in a lithium–sulfur battery, correlat...
The X-ray absorption spectra (XAS) of lithium polysulfides (Li2Sx) of various chain lengths (x) diss...
The identification and quantification of species involved in the electrochemical reactions of lithiu...
International audienceLi-S batteries are promising energy storage technology for the future, however...
International audienceIn a lithium/sulfur (Li/S) battery, the reduction of sulfur along discharge in...
Lithium sulfur batteries have garnered a significant amount of attention as a next-generation energy...
The X-ray absorption spectroscopy technique has been applied to study different stages of the lithiu...
Lithium-sulfur batteries have a theoretical specific energy that is a factor of five greater than th...
The lithium–sulfur battery is a promising system for the future generation of rechargeable batteries...