Tzoulaki, D.; Schmidt, W.; Wilczok, U.; Kärger, J. Formation of surface barriers on silicalite-1 crystal fragments by residual water vapour as probed with isobutane by interference microscopy. Microporous and Mesoporous Materials2008, 110, 72–76.
Chmelik, C.; Varmla, A.; Heinke, L.; Shah, D. B.; Karger, J.; Kremer, F.; Wilczok, U.; Schmidt, W. Effect of surface modification on uptake rates of isobutane in MFI crystals: An infrared Microscopy study. Chemistry of Materials2007, 19, 6012–6019.
Pavel, C. C.; Zibrowius, B.; Löffler, E.; Schmidt, W. On the influence of ion exchange on the local structure of the titanosilicate ETS-10. Physical Chemistry Chemical Physics2007, 9, 3440–3446.
Jobic, H.; Schmidt, W.; Krause, C. B.; Karger, J. PFG NMR and QENS diffusion study of n-alkane homologues in MFI-type zeolites. Microporous and Mesoporous Materials2006, 90, 299–306.
Lu, A.-H.; Li, W.-C.; Schmidt, W.; Schüth, F. Fabrication of hierarchically structured carbon monoliths via self-binding and salt templating. Microporous and Mesoporous Materials2006, 95, 187–192.
Lu, A.-H.; Li, W.-C.; Schmidt, W.; Schüth, F. Low temperature oxidative template removal from SBA-15 using MnO₄- solution and carbon replication of the mesoporous silica product. Journal of Materials Chemistry2006, 16, 3396–3401.
Pavel, C. C.; Park, S.-H.; Dreier, A.; Tesche, B.; Schmidt, W. Structural defects induced in ETS-10 by postsynthesis treatment with H₂O₂ solution. Chemistry of Materials2006, 18, 3813–3820.
Pavel, C. C.; Schmidt, W. Generation of hierarchical pore systems in the titanosilicate ETS-10 by hydrogen peroxide treatment under microwave irradiation. Chemical Communications (Cambridge, U. K.)2006, 882–884.
Weidenthaler, C.; Zibrowius, B.; Schimanke, J.; Mao, Y.; Mienert, B.; Bill, E.; Schmidt, W. Oxidation behavior of ferrous cations during ion exchange into zeolites under atmospheric conditions. Microporous and Mesoporous Materials2005, 84, 302–317.
Bandyopadhyay, M.; Birkner, A.; van den Berg, M. W. E.; Klementiev, K. V.; Schmidt, W.; Grünert, W.; Gies, H. Synthesis and characterization of mesoporous MCM-48 containing TiO₂ nanoparticles. Chemistry of Materials2005, 17, 3820–3829.
Den neuen Typ von OER-Elektrokatalysatoren entdeckten PD Dr. Harun Tüysüz (Max-Planck-Institut für Kohlenforschung) sowie Prof. Dr. Claudia Felser (Max-Planck-Institut für Chemische Physik fester Stoffe) und ihre Teams.
Gemeinsam mit seinem Projektpartner Prof. Dr. Joseph Moran von der Universität Straßburg erhielt er nun den Forcheurs Jean-Marie Lehn Preis 2020 für die gemeinsamen Arbeiten zur Katalyse in der präbiotischen Chemie.
Auszeichnung erfolgt für seine herausragenden Arbeiten zur Entwicklung von Katalysatoren, die sowohl für chemische Synthesen als auch zur Energieumwandlung genutzt werden können.