Dr. Martin Schulz

Wissenschaftlicher Mitarbeiter

Martin Schulz studierte Chemie an der Friedrich-Schiller-Universität Jena und diplomierte mit "Untersuchungen von Reaktionen zwischen Guanidinen und Bis-(1,3,4-thiadiazolo)-1,3,5-triaziniumsalze". Während seiner Doktorarbeit beschäftigte er sich mit der Entwicklung einer modularen Synthese zur Darstellung vierzähniger Liganden im Rahmen des Sonderforschungsbereichs 436 "Metalvermittelte Reaktionen nach dem Vorbild der Natur".  Anschließend wechselte er an die Dublin City University in Dublin und untersuchte die Eigenschaften von Brückenliganden für die photokatalytische Wasserstoffgenerierung. Seit 2011 arbeitet er in der pharmazeutischen Radiochemie an der Entwicklung optischer Kontrastmittel.


Publikationen

  • S. Soman, G. Singh Bindra, A. Paul, R. Groarke, J. C. Manton, F. M. Connaughton, M. Schulz, D. Dini, C. Long, M. T. Pryce, and J. G. Vos, Wavelength dependent photocatalytic H2 generation using iridium-Pt/Pd complexes, Dalton Trans. (2012) accepted DOI:10.1039/c2dt32028b.

  • M. Schulz*, M. Karnahl, M. Schwalbe, J.G. Vos, The role of the bridging ligand in photocatalytic supramolecular assemblies for the reduction of protons and carbon dioxide, Coord. Chem. Rev. 256 (2012) 1682–1705.

  • A. Paul, D. Connolly, M. Schulz, M. T. Pryce, J. G. Vos, Effect of Water during the Quantitation of Formate in Photocatalytic Studies on CO2 Reduction in Dimethylformamide., Inorg. Chem. 51 (2012) 1977-1979.

  • J. Šimeček, M. Schulz, J. Notni, J. Plutnar, V. Kubíček, J. Havlíčková, et al., Complexation of Metal Ions with TRAP (1,4,7-Triazacyclononane Phosphinic Acid) Ligands and 1,4,7-Triazacyclononane-1,4,7-triacetic Acid: Phosphinate-Containing Ligands as Unique Chelators for Trivalent Gallium, Inorg. Chem. 51 (2012) 577-590.

  • G. Singh Bindra, M. Schulz, A. Paul, S. Soman, R. Groarke, J. Inglis, et al., The effect of peripheral bipyridine ligands on the photocatalytic hydrogen production activity of Ru/Pd catalysts., Dalton Trans. 40 (2011) 10812-4.

  • M. Schulz, J. Hirschmann, A. Draksharapu, G. Singh Bindra, S. Soman, A. Paul, et al., Reinvestigating 2,5-di(pyridin-2-yl)pyrazine ruthenium complexes: selective deuteration and Raman spectroscopy as tools to probe ground and excited-state electronic structure in homo- and heterobimetallic complexes., Dalton Trans. 40 (2011) 10545-52.

  • M. Schulz*, H. Görls, M. Westerhausen, A hydrogen-bridged adduct 3,4,6,7,8,9-hexa-hydro-2H-pyrimido[1,2-a]pyrimidin-1-ium [1,3-bis-(tert-butyl-dimethyl-sil-yloxy)-1,3-bis-(pyridin-2-yl)propan-2-yl-idene]nitro-nate acetonitrile monosolvate., Acta Cryst., Sec. E. 67 (2011) o2396.

  • M. Schulz*, K. Wimmer, H. Görls, M. Westerhausen, Heterogeneously Catalyzed Diastereoselective Synthesis of 2-Nitro-1,3-di(pyridin-2-yl)propane-1,3-diols, Z. Naturforsch. B Chem. Sci. 66b (2011) 611-623.

  • M. Schulz*, R. Debel, H. Görls, W. Plass, M. Westerhausen, Synthesis and characterization of a N-salicylaldimine ligand and its vanadium(V) complex, Inorg. Chim. Acta. 365 (2011) 349-355.

  • M. Schulz, T. Kloubert, H. Görls, M. Westerhausen, 1-Nitro-2,3-di-2-pyridyl-2,3-dihydro-indolizine., Acta Cryst., Sec. E. 65 (2009) o957.

  • T. Kloubert, M. Schulz, H. Görls, M. Friedrich, M. Westerhausen, Synthesis of 1,4-Diamino-2,3-di(2-pyridyl)butane and its Dinuclear Zinc ( II ) Chloride Complex, Z. Naturforsch. B Chem. Sci. 64b (2009) 784-792.

  • M. Schulz, M. Klopfleisch, H. Görls, M. Kahnes, M. Westerhausen, Synthesis and structural diversity of 2-pyridylmethylideneamine complexes of zinc(II) chloride, Inorg. Chim. Acta. 362 (2009) 4706-4712.

  • M. Schulz, M. Michnacs, H. Görls, E. Anders, Synthesis of Unusually Substituted Ureas Starting from Bis(1,3,4-thiadiazolo)-1,3,5-triazinium Halides via Oxo-imidothioate Zwitterions, Eur. J. Org. Chem. 2009 (2009) 4143-4148.

  • C. Koch, M. Kahnes, M. Schulz, H. Görls, M. Westerhausen, Lithium and Zinc Complexes ofC- andN-Functionalized (2-Pyridylmethyl)amines, Eur. J. Inorg. Chem. 2008 (2008) 1067-1077.

  • U. Köhn, M. Schulz, A. Schramm, W. Günther, H. Görls, S. Schenk, et al., A New Class of Chiral Phosphazene Bases: Synthesis and Characterization, Eur. J. Org. Chem. 2006 (2006) 4128-4134.

  • U. Köhn, M. Schulz, H. Görls, E. Anders, Neutral zinc(II) and molybdenum(0) complexes with chiral guanidine ligands: synthesis, characterisation and applications, Tetrahedron: Asymmetry. 16 (2005) 2125-2131.