Knossalla, J.; Mielby, J.; Göhl, D.; Wang, F. R.; Jalalpoor, D.; Hopf, A.; Mayrhofer, K. J. J.; Ledendecker, M.; Schüth, F. Chemical Vapor Deposition of Hollow Graphitic Spheres for Improved Electrochemical Durability. ACS Applied Energy Materials2021, 4, 5840–5847.
Knossalla, J.; Paciok, P.; Göhl, D.; Jalalpoor, D.; Pizzutilo, E.; Mingers, A. M.; Heggen, M.; Dunin-Borkowski, R. E.; Mayrhofer, K. J. J.; Schüth, F.; Ledendecker, M. Shape-Controlled Nanoparticles in Pore-Confined Space. Journal of the American Chemical Society2018, 140, 15684–15689.
Göhl, D.; Mingers, A. M.; Geiger, S.; Schalenbach, M.; Cherevko, S.; Knossalla, J.; Jalalpoor, D.; Schüth, F.; Mayrhofer, K. J. J.; Ledendecker, M. Electrochemical stability of hexagonal tungsten carbide in the potential window of fuel cells and water electrolyzers investigated in a half-cell configuration. Electrochimica Acta2018, 270, 70–76.
Ortatatlı, Ş.; Knossalla, J.; Schüth, F.; Weidenthaler, C. Monitoring the formation of PtNi nanoalloys supported on hollow graphitic spheres using in situ pair distribution function analysis. Physical Chemistry Chemical Physics2018, 20, 8466–8474.
Pizzutilo, E.; Knossalla, J.; Geiger, S.; Grote, J.-P.; Polymeros, G.; Baldizzone, C.; Mezzavilla, S.; Ledendecker, M.; Mingers, A.; Cherevko, S.; Schüth, F.; Mayrhofer, K. J. J. The Space Confinement Approach Using Hollow Graphitic Spheres to Unveil Activity and Stability of Pt-Co Nanocatalysts for PEMFC. Advanced Energy Materials2017, 7, 1700835.
Knossalla, J.; Jalalpoor, D.; Schüth, F. Hands-on Guide to the Synthesis of Mesoporous Hollow Graphitic Spheres and Core–Shell Materials. Chemistry of Materials2017, 29, 7062–7072.
Polymeros, G.; Baldizzone, C.; Geiger, S.; Grote, J. P.; Knossalla, J.; Mezzavilla, S.; Keeley, G. P.; Cherevko, S.; Zeradjanin, A. R.; Schüth, F.; Mayrhofer, K. J. J. High temperature stability study of carbon supported high surface area catalysts - Expanding the boundaries of ex-situ diagnostics. Electrochimica Acta2016, 211, 744–753.
Knossalla, J.; Mezzavilla, S.; Schüth, F. Continuous synthesis of nanostructured silica based materials in a gas–liquid segmented flow tubular reactor. New Journal of Chemistry2016, 40, 4361–4366.
Knossalla, J. Utilizing Confined Space to Attain High Performance Catalysts and Support Materials. Doktorarbeit, Ruhr-Universität Bochum, Bochum, 2017.