The project established operando small- and wide-angle X-ray scattering (SAXS / WAXS) and operando small-angle neutron scattering (SANS) as suitable tools to track the growth and dissolution of solid deposits from atomic to sub-micron scales during charge and discharge of Li-S battery cathodes. Stochastic modelling based on the SANS data allowed quantification of the chemical phase evolution in real space. Transmission electron microscopy (TEM) provided complimentary local structural information to verify the model input for analyzing the operando scattering data via stochastic modeling. The concept of plurigaussian random fields allowed fitting the SAXS and SANS data and generating a statistically representative 3D structure of the solid multiphase discharge products.
Using these methods provided direct evidence for the existence and persistence of a second solid discharge product in Li-S batteries, next to the known nanocrystalline Li2S. By combining operando X-ray and neutron scattering and stochastic modelling (plurigaussian random fields), we showed that crystalline Li2S aggregates are embedded in a matrix of persisting smaller Li2Sx particles. Raman spectroscopy indicates that this second phase is likely Li2S2. Charging reverses the process. On charging, the solid Li2S2 particles are found to initially grow while Li2S already disappears.
These results were disseminated by the following publication and presentations at conferences (among others):
Scientific publications:
C. Prehal, J.M. von Mentlen, S. Drvarič Talian, A. Vizintin, R. Dominko, H. Amenitsch, L. Porcar, S.A. Freunberger, V. Wood, On the nanoscale structural evolution of solid discharge products in Lithium-Sulfur batteries using neutron, x-ray and electron techniques, currently under review, preprint:
https://doi.org/10.21203/rs.3.rs-818607/v3(si apre in una nuova finestra)C. Prehal, S. Mondal, L. Lovicar, S. A. Freunberger, Exclusive solution discharge in Li-O2 batteries? ACS Energy Lett. 2022, 7, XXX, 3112–3119
Oral presentations at conferences or seminar talks:
C. Prehal, J.M. von Mentlen, S. Drvarič Talian, A. Vizintin, R. Dominko, H. Amenitsch, Lionel Porcar, S.A. Freunberger, V. Wood, Mechanism of Li2S formation and dissolution in Lithium-Sulfur batteries, Swiss Battery Days 2022, EMPA, Dübingen, Switzerland. 08/2022
C. Prehal, S. A. Freunberger, V. Wood, In situ exploration of in-pore redox processes for beyond intercalation-type energy storage, CIMTEC conference 2022, Perugia Italy, 06/2022
C. Prehal, H. Amenitsch, S. A. Freunberger, V. Wood, Operando X-ray scattering with stochastic modelling to quantify the nanoscale phase evolution in post-Li-ion batteries, MRS fall meeting 2021, online, Boston USA 12/2021
C. Prehal, H. Amenitsch, V. Wood, S. A. Freunberger, Nanoscale phase evolution in conversion-type lithium-sulfur and lithium-air battery cathodes, EUROMAT 2021, online, Graz Austria 09/2021
C. Prehal, H. Amenitsch, V. Wood, S. A. Freunberger, Mechanisms of reversible active material electrodeposition in Li-O2 batteries and beyond, ISE annual meeting 2021, online, South Korea 09/2021