In recent years, the technology readiness level of next generation lithium sulfur Li S batteries has shifted from coin cell to pouch cell dimensions. Promising optimizations of the electrodes, electrolytes, active materials, and additives lead to improved performance and cycling stability. However, new challenges arise with the pouch cell design and engineering including electrode stacking and electrolyte filling , which influence the mechanistic processes of the cell. This study presents an unprecedented multimodal operando investigation of Li S batteries on a pouch cell level and provides an inside view of material transformations during battery cycling, using X ray radiography, electrochemical impedance spectroscopy, and spatially res...