DOE OSTI · 3013100
Linking Pressure to Electrochemical Evolution in Solid-State Conversion Cathode Composites
Abstract
Conversion-type cathodes, such as sulfur, FeS 2 , and FeF 3 , offer high theoretical capacities in solid-state lithium batteries but are hindered by substantial volume changes during cycling, leading to interfacial contact loss, crack formation, and microstructural degradation. Here, we investigate the relationships between electrochemical, mechanical, and structural evolution in solid-state electrode composites with these three active materials. Using real-time stack-pressure monitoring, synchrotron X-ray absorption spectroscopy, and electrokinetic modeling, we elucidate how stress evolution is linked to reversible and irreversible redox reactions. Nonlinear stack pressure evolution in cells with sulfur, FeS 2 , and FeF 3 electrode composites is found to arise from material-specific volume changes, the balance of volume change between the working and counter electrode, and the formation of distinct reaction intermediates. The three materials exhibit distinct stack pressure evolution, which is closely related to the different reaction processes in the materials, as demonstrated with X-ray absorption spectroscopy measurements. Through mesoscale modeling, we relate the experimental measurements to species evolution at the particle scale and track the dynamic coexistence of intermediate phases. Our findings highlight the importance of designing for volume changes of a given active material in solid-state battery systems.
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Alsaç, Elif Pınar [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000242559676), Sharma, Arpan Kumar [Purdue University, West Lafayette, IN (United States)] (ORCID:0000000261252194), Yoon, Sun Geun [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000262228962), Vishnugopi, Bairav S. [Purdue University, West Lafayette, IN (United States)] (ORCID:0009000263579358), Wang, Congcheng [Georgia Institute of Technology, Atlanta, GA (United States)], Thomas, Talia A. [Georgia Institute of Technology, Atlanta, GA (United States)], Nelson, Douglas Lars [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000334290547), Eze, Udochukwu D. [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000249687689), Jeong, Won Joon [Georgia Institute of Technology, Atlanta, GA (United States)], Harris, John [Georgia Institute of Technology, Atlanta, GA (United States)], Mukherjee, Partha P. [Purdue University, West Lafayette, IN (United States)], McDowell, Matthew T. [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000155523456). 2025-12-31. Linking Pressure to Electrochemical Evolution in Solid-State Conversion Cathode Composites. https://doi.org/10.1021/acsami.5c20956
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