Zimmermann, T.; Bilke, M.; Soorholtz, M.; Schüth, F. Influence of Catalyst Concentration on Activity and Selectivity in Selective Methane Oxidation with Platinum Compounds in Sulfuric Acid and Oleum. ACS Catalysis2018, 8, 9262–9268.
Xiong, Y.; Gu, D.; Deng, X.; Tüysüz, H.; van Gastel, M.; Schüth, F.; Marlow, F. High surface area black TiO2 templated from ordered mesoporous carbon for solar driven hydrogen evolution. Microporous and Mesoporous Materials2018, 268, 162–169.
Pichler, C.; Gu, D.; Joshi, H.; Schüth, F. Influence of preparation method and doping of zirconium oxide onto the material characteristics and catalytic activity for the HDO reaction in nickel on zirconium oxide catalysts. Journal of Catalysis2018, 365, 367–375.
Pichler, C.; Al-Shaal, M. G.; Gu, D.; Joshi, H.; Ciptonugroho, W.; Schüth, F. Ruthenium Supported on High-Surface-Area Zirconia as an Efficient Catalyst for the Base-Free Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid. ChemSusChem2018, 11, 2083–2090.
Dierks, M.; Cao, Z.; Manayil, J. C.; Akilavasan, J.; Wilson, K.; Schüth, F.; Rinaldi, R. Impact of Hydrophobic Organohybrid Silicas on the Stability of Ni2P Catalyst Phase in the Hydrodeoxygenation of Biophenols. ChemCatChem2018, 10, 2219–2231.
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.
Schreyer, H.; Immohr, S.; Schüth, F. Oscillatory combustion of propene during in situ mechanical activation of solid catalysts. Journal of Materials Science2017, 52, 12021–12030.
Wang, Y.; Widmann, D.; Wittmann, M.; Lehnert, F.; Gu, D.; Schüth, F.; Behm, R. J. High activity and negative apparent activation energy in low-temperature CO oxidation - present on Au/Mg(OH)2, absent on Au/TiO2. Catalysis Science & Technology2017, 7, 4145–4161.
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.
Duyckaerts, N.; Bartsch, M.; Trotus, I.-T.; Pfänder, N.; Lorke, A.; Schüth, F.; Prieto, G. Intermediate product regulation in tandem solid catalysts with multimodal porosity for high-yield synthetic fuel production. Angewandte Chemie International Edition2017, 56, 11480–11484.
Heracleous, E.; Gu, D.; Schüth, F.; Bennett, J. A.; Isaacs, M. A.; Lee, A. F.; Wilson, K.; Lappas, A. A. Bio-oil upgrading via vapor-phase ketonization over nanostructured FeOx and MnOx: catalytic performance and mechanistic insight. Biomass and Bioenergy2017, 7, 319–329.
Wang, Y.; Widmann, D.; Lehnert, F.; Gu, D.; Schüth, F.; Behm, R. J. Avoiding Self-Poisoning: A Key Feature for the High Activity of Au/Mg(OH)2 Catalysts in Continuous Low-Temperature CO Oxidation. Angewandte Chemie International Edition2017, 56, 9597–9602.
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.