Published March 30, 2026 | Version v1 Dataset Open Data to: Distinct Redox Chemistry in Solid-State Li–S Batteries Induced by Solid Electrolytes Authors/Creators Kim, Taehun (Researcher)1 Huang, Jake D. (Researcher)2 Kraft, Marvin Alexander (Researcher)1, 2 Hartel, Johannes (Researcher)2 Lange, Martin Alexander (Researcher)1 Zeier, Wolfgang G. (Researcher)1, 2 Show affiliations 1. Institute of Energy Materials and Devices, Helmholtz-Institute Münster (IMD-4), Forschungszentrum Jülich GmbH, 48149 Münster, Germany 2. Institute of Inorganic and Analytical Chemistry, University of Münster, 48149 Münster, Germany Description Dataset - The sulfur redox mechanism in solid-state lithium–sulfur (Li–S) batteries remains unclear, as it has been reported to vary under different operating conditions due to sluggish reaction kinetics. Herein, we investigate sulfur reactions in solid-state batteries using solid electrolytes with high ionic conductivities to mitigate kinetic limitations. A solid-state Li–S cell employing Li5.5PS4.5Cl1.5 exhibits an asymmetric voltage profile at 25 °C, with two voltage plateaus during discharge and poorly separated oxidation reactions during charge. Ex situ X-ray absorption spectroscopy (XAS) elucidates that these poorly separated oxidation reactions consist of overlapping conversion reactions, in contrast to the clearly distinguishable two-step conversion from S8 to Li2S via Li2Sx during discharge. In addition, operando impedance evolution, analyzed using a combined distribution of relaxation times (DRT) and distribution of phasances (DOP) model, reveals distinct relaxation processes during discharge and charge that arise from differences in the transport properties of the reaction products. This work demonstrates an intrinsic asymmetric sulfur redox mechanism in solid-state batteries that is difficult to resolve by conventional electrochemical measurements alone but can be clarified by combining XAS with impedance analysis using the DRT-DOP model. Files Data Storage Li–S operando EIS.zip Files (2.3 GB) Name Size Download all Data Storage Li–S operando EIS.zip md5:3e8debcea5a7b8c04eee842ad41367ae 2.2 GB Preview Download Data Storage Li–S.zip md5:49b7bb4032777e6b9ac87e554fedde0f 94.0 MB Preview Download Additional details Related works Is cited by Text: 10.1021/acs.chemmater.6c01252 (DOI) Funding Bundesministerium für Forschung, Technologie und Raumfahrt AReLiS-3 13XP0595B Deutsche Forschungsgemeinschaft Röntgenphotoelektronenspektrometer (XPS) 525733742 Dates Issued 2026-07-06