Lehrstuhl für Bioanorganische Chemie

Egerlandstraße 1/3
91058 Erlangen

Related Project(s)

Mechanistic clarification of the elementary reaction steps involved in the metalloporphyrins-catalyzed oxidation of hydrogen sulfide under aerobic aqueous conditions
Prof. Dr. Ivana Ivanovic-Burmazovic

Prof. Dr. Ivana Ivanovic-Burmazovic
(15/08/2012 - 14/08/2013)

(SFB 583: Redoxaktive Metallkomplexe - Reaktivitätssteuerung durch molekulare Architekturen):
Siebenfach/Sechsfach koordinierte Eisen- und Mangankomplexe mit Superoxid-Dismutase-Aktivität als synthetische Enzyme (A 08)
Prof. Dr. Ivana Ivanovic-Burmazovic
(01/07/2004 - 30/06/2012)

Publications (Download BibTeX)

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Andjelkovic, K., Ivanovic-Burmazovic, I., Gruden, M., & Niketic, S.R. (2001). Complexes of molybdenum(V) and lanthanum(III) with 2′,2‴-(2,6-pyridinediyldiethylidene)-dioxamohydrazide (H2dapsox). Journal of Coordination Chemistry, 53(4), 289-300.
van Eldik, R., Wolak, M., & Zahl, A. (2001). Kinetics and mechanism of the reversible binding of nitric oxide to reduced cobalamin B_12r_. Journal of the American Chemical Society, 123, 9780.
Dahlenburg, L., Herbst, K., & Zahl, A. (2000). Funktionelle Phosphane Part X. Die homogene Hydrierung von Ketonen und a,ß-ungesättigten Carbonylverbindungen mit 2-(Diphenylphosphanyl)anilido-Komplexen des Iridiums und Rhodiums als Katalysatoren. Molekülstrukturen von [Rh(PPh3)2(2-Ph2PC6H 4NH-?N,?P)]. Journal of Organometallic Chemistry, 616(1-2), 19-28. https://dx.doi.org/10.1016/S0022-328X(00)00519-2
Dahlenburg, L., Herbst, K., & Zahl, A. (2000). Die homogene Hydrierung von Ketonen und alpha, beta-ungesättigten Carbonylverbindungen mit 2-(diphenylphosphanyl)anilido-Komplexen des Iridiums und Rhodiums als Katalysatoren. Journal of Organometallic Chemistry, 616, 19 - 28.
Ivanovic-Burmazovic, I., Sumar, M., Brčeski, I., Hodzic, I., & Andjelkovic, K. (2000). The UO2 2+ Complexes with 2′',2‴-(2,6-PyridindiyIdiethylidine)Dioxamohydrazide (H2dapsox). Trans Tech Publications.
Dahlenburg, L., Herbst, K., & Zahl, A. (2000). Functional phosphines. Part X. Homogeneous hydrogenation of ketones and a ,b -unsaturated carbonyl compounds with 2-(diphenylphosphino)anilido complexes of iridium and rhodium as catalysts. Molecular structure of [Rh(PPh3)2(2-Ph2PC6H4NH-k N,k P)] and [Ir(CO)(PPh3)(2-Ph2PC6H4NH-k N,k P)]. Journal of Organometallic Chemistry, 616(1-2), 19-28.
Fekl, U., Zahl, A., & van Eldik, R. (1999). Detailed mechanistic information on methane elimination from a methyl(hydrido)platinum(IV) complex. Relevance for the mechanism of methane activation. Organometallics, 18(20), 4156-4164. https://dx.doi.org/10.1021/om9901426
Zahl, A., & van Eldik, R. (1999). Kinetics and mechanism of the complexation of La3+ and Cu2+ ions with N-methylacetohydroxamic acid and desferrioxamine B1. Inorganic Chemistry, 38(18), 4064-4069. https://dx.doi.org/10.1021/ic990107r
Fekl, U., Zahl, A., & van Eldik, R. (1999). Mechanistic studies on the reductive elimination of methane from methyl(hydrido)platinum(IV) complexes. ACS National Meeting Book of Abstracts, XX.
Zahl, A., & van Eldik, R. (1998). High-Pressure Oxygen-17 NMR Study of the Dihydroxo-Bridged Rhodium(III) Hydrolytic Dimer. Mechanistic Evidence for Limiting Dissociative Water Exchange Pathways. Inorganic Chemistry, 37(16), 3948-3953. https://dx.doi.org/10.1021/ic971074n
Rau, T., Alsfasser, R., Zahl, A., & van Eldik, R. (1998). Structural and Kinetic Studies on the Formation of Platinum(II) and Palladium(II) Complexes with L-Cysteine-Derived Ligands. Inorganic Chemistry, 37(17), 4223-4230. https://dx.doi.org/10.1021/ic9711574
Sladic, D., Beljanski, V., Prelesnik, B., Ivanovic-Burmazovic, I., & Andjelkovic, K. (1998). Preparation, crystal structure and antibacterial activity of condensation products of usnic acid and acyl hydrazides. Journal of the Serbian Chemical Society, 63(3), 171-182.
Ivanovic-Burmazovic, I., Bacchi, A., Pelizzi, G., Leovac, V., & Andjelkovic, K. (1998). Cu(II), Ni(II) and Fe(III) Complexes with 2’2’’’-(2,6-Pyridindiyldiethylidene)-dioxamohydrazide in a Monoanionic Form. The Crystal Structure of Aqua-2’,2’’’-(2,6–piridindiyldiethylidene)–dioxamohydrazidecopper (II) Perchlorate. Polyhedron, 18(1-2), 119-127.
Andjelkovic, K., Beljanski, V., Ivanovic-Burmazovic, I., Brceski, I., & Minic, D. (1998). The Usnic Acid Condensation Derivates and their Copper(III) Complexes Thermal Behaviour. Chemical Industry & Chemical Engineering Quarterly, 52, 351-356.
Dahlenburg, L., Weiss, A., Bock, M., & Zahl, A. (1997). Ethinyl- und Butadiinylkomplexe des Eisens und Rutheniums mit terminalen Hauptgruppenelement-Substituenten. Journal of Organometallic Chemistry, 541(1-2), 465-471. https://dx.doi.org/10.1016/S0022-328X(97)00177-0
Brasch, N., Müller, F., Zahl, A., & van Eldik, R. (1997). Formation of an association complex without a substitution reaction occurring between methylcobalamin and cyanide. Inorganic Chemistry, 36(21), 4891-1894.
Dahlenburg, L., Weiss, A., Bock, M., & Zahl, A. (1997). Ethynyl and butadiynyl complexes of iron and ruthenium with terminal main-group-element substituents, Cp*Fe(Ph2PCH(X) CH2PPh2)Cº CY (X = H, PPh2; Y = H, PPh2, P(+)Ph2Me) and Ru(Ph2PCH2PPh2)2(X)Cº CCº CSiMe3 (X = Cl, Cº CCº CSiMe3). Journal of Organometallic Chemistry, 541(1-2), 465-471.
Andjelkovic, K., Ivanovic-Burmazovic, I., Niketic, S.R., Prelesnik, B., & Leovac, V. (1997). Synthesis and structure of aqua-2′,2‴-(2,6-pyridindiyldiethylidene)dioxamohydrazide-copper(II) hydrate. Polyhedron, 16(24), 4221-4228.
Ivanovic-Burmazovic, I., Andjelkovic, K., Beljanski, V., Prelesnik, B., Leovac, V., & Momirovic, M. (1997). Pentagonal bipyramidal complexes of Co(II) with singly- and doubly-deprotonated 2′,2‴-(2,6-pyridindiyldi-ethylidene)dioxamohydrazide: The Crystal Structure of [Diaqua-2′,2‴-(2,6-Pyridindiyldiethylidene) Dioxamohydrazidecobalt(II)] Hexahydrate. Journal of Coordination Chemistry, 42(4), 335-342.
Prelesnik, B., Ivanovic-Burmazovic, I., Leovac, V., & Andjelkovic, K. (1996). mer-[2′-(2-benzoyl-1-methylethylidene)-1-naphthohydrazido(2-)] (methanol)-cis-dioxomolybdenum(VI). Acta Crystallographica Section C: Crystal Structure Communications, 52(6), 1375-1377.

Last updated on 2019-24-04 at 10:25