Gobin, O. C.; Martinez Joaristi, A.; Schüth, F. Multi-objective optimization in combinatorial chemistry applied to the selective catalytic reduction of NO with C₃H₆. Journal of Catalysis2007, 252, 205–214.
Lu, A.-H.; Li, W.-C.; Hou, Z.; Schüth, F. Molecular level dispersed Pd clusters in the carbon walls of ordered mesoporous carbon as a highly selective alcohol oxidation catalyst. Chemical Communications (Cambridge, U. K.)2007, 1038–1040.
Polarz, S.; Orlov, A. V.; Schüth, F.; Lu, A.-H. Preparation of high-surface-area zinc oxide with ordered porosity, different pore sizes, and nanocrystalline walls. Chemistry-A European Journal2007, 13, 592–597.
Procelewska, J.; Llamas Galilea, J.; Clerc, F.; Farrusseng, D.; Schüth, F. Computational methods in the development of a knowledge-based system for the prediction of solid catalyst performance. Combinatorial Chemistry & High Throughput Screening2007, 10, 37–50.
Zhang, J.; Comotti, M.; Schüth, F.; Schlögl, R.; Su, D. Commercial Fe- or Co-containing carbon nanotubes as catalysts for NH₃ decomposition. Chemical Communications (Cambridge, U. K.)2007, 1916–1918.
Arnal, P. M.; Weidenthaler, C.; Schüth, F. Highly Monodisperse Zirconia-Coated Silica Spheres and Zirconia/Silica Hollow Spheres with Remarkable Textural Properties. Chemistry of Materials2006, 18, 2733–2739.
Ritzkopf, I.; Vukojević, S.; Weidenthaler, C.; Grunwaldt, J.-D.; Schüth, F. Decreased CO production in methanol steam reforming over Cu/ZrO2 catalysts prepared by the microemulsion technique. Applied Catalysis A: General2006, 302, 215–223.
Pelster, S. A.; Schrader, W.; Schüth, F. Monitoring Temporal Evolution of Silicate Species during Hydrolysis and Condensation of Silicates Using Mass Spectrometry. Journal of the American Chemical Society2006, 128, 4310–4317.
Arnal, P. M.; Comotti, M.; Schüth, F. High-temperature-stable catalysts by hollow sphere encapsulation. Angewandte Chemie-International Edition2006, 45, 8224–8227.
Arnal, P. M.; Schüth, F.; Kleitz, F. A versatile method for the production of monodisperse spherical particles and hollow particles: Templating from binary core-shell structures. Chemical Communications (Cambridge, U. K.)2006, 1203–1205.
Bandyopadhyay, M.; Korsak, O.; van den Berg, M. W. E.; Grunert, W.; Birkner, A.; Li, W.; Schüth, F.; Gies, H. Gold nano-particles stabilized in mesoporous MCM-48 as active CO-oxidation catalyst. Microporous and Mesoporous Materials2006, 89, 158–163.
TU Dortmund und Pantazis-Gruppe weisen in Kollaborationsprojekt eine neue Klasse von organischer Verbindung mit neutralem, einfach gebundenen Kohlenstoffatom nach
Dr. Dimitrios Pantazis, Gruppenleiter am MPI für Kohlenforschung in der Abteilung für molekulare Theorie und Spektroskopie, ist zum Vizepräsidenten der QBIC Society gewählt worden.
Mit Hilfe von Multiskalen-Simulationsmethoden und modernsten quantenchemischen Berechnungen untersuchten Dr. Dimitrios Pantazis und seine Gruppe, wie die Energie des Sonnenlichts in den Elektronenfluss umgewandelt wird, der chemische Reaktionen antreibt.