Palkovits, R.; von Malotki, C.; Baumgarten, M.; Müllen, K.; Baltes, C.; Antonietti, M.; Kuhn, P.; Weber, J.; Thomas, A.; Schüth, F. Development of Molecular and Solid Catalysts for the Direct Low-Temperature Oxidation of Methane to Methanol. ChemSusChem2010, 3, 277–282.
Baltes, C.; Vukojević, S.; Schüth, F. Correlations between Synthesis, Precursor, and Catalyst Structure and Activity of a Large Set of CuO/ZnO/Al₂O₃ Catalysts for Methanol Synthesis. Journal of Catalysis2008, 258, 334–344.
Olejnik, S.; Baltes, C.; Muhler, M.; Schüth, F. Parallelized N₂O Frontal Chromatography for the Fast Determination of Copper Surface Areas. Journal of Combinatorial Chemistry2008, 10, 387–390.
Rohe, B.; Weiss, R.; Vukojević, S.; Baltes, C.; Muhler, M.; Tausch, M.; Epple, M. CuO/ZnO Nanoparticles in a Matrix of Amorphous Silica as High-Surface Precursors for Methanol Synthesis. European Journal of Inorganic Chemistry2007, 1723–1727.
Schunk, S. A.; Baltes, C.; Sundermann, A. Exploring Structure Activity Relationships in the Acetoxylation of Small Olefins. Catalysis Today2006, 117, 304–310.
Weiss, R.; Vukojevic, S.; Baltes, C.; d'Alnoncourt, R. N.; Muhler, M.; Epple, M. Copper/Zinc L-Tartrates: Mixed Crystals and Thermolysis to a Mixture of Copper Oxide and Zinc Oxide that is Catalytically Active in Methanol Synthesis. European Journal of Inorganic Chemistry2006, 4782–4786.
Schunk, A.; Baltes, C.; Klein, J. How High Throughput Technology Can Facilitate Better Hydrocarbon Processing. Oil, Gas (Hamburg, Ger.)2005, 31, 77–82.
Baltes, C. Hochdurchsatz-Untersuchungen der Synthese/Struktur/Aktivitäts-Beziehungen bei Cu/ZnO/Al2O3-Katalysatoren für die Methanolsynthese. PhD Thesis, Ruhr-Universität Bochum, Bochum, 2007.
Prof. Ferdi Schüth has been named an honorary fellow of the Chinese Chemical Society for his contributions to sustainable catalysis and international collaboration.
To mark the 100th anniversary of the Fischer-Tropsch synthesis, a scientific conference will be held in Mülheim next year. Our institute will of course be taking part.