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order to optimise catalyst inks and functional coatings for future energy applications more quickly and effectively. Such inks and coatings form a crucial basis for high-performance fuel cells and
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, feasibility studies on coating the innovative support structure must be carried out. The central challenge is the deposition of oxide-ceramic functional layers onto metallic components with complex
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prediction of machining results and improve process stability with fewer experimental iterations. The project integrates antibacterial coating strategies to predict coating efficacy and long-term surface
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high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state batteries, thermal barrier coatings
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batteries, thermal barrier coatings for gas turbines, and gas separation membranes. The focus of all these technologies is on inorganic materials, which are processed as functional layers from powders or via