Master Degree / Yüksek Lisans Tezleri

Permanent URI for this collectionhttps://hdl.handle.net/11147/3008

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Now showing 1 - 4 of 4
  • Master Thesis
    Reactions of Oxomolybdenum Compounds With Nitrogen Donor Ligands and Related Computational Calculational Calculations
    (Izmir Institute of Technology, 2009) Öcal, Jale; Sözüer, Işıl; Topaloğlu Sözüer, Işıl; 04.01. Department of Chemistry; 04. Faculty of Science; 01. Izmir Institute of Technology
    Reactions of the dioxomolybdenum(VI) compound, MoCl2O2 with phenylenediamine derivatives the bidentate N-N nitrogen ligands 1-8 (ophenylenediamine, N-phenyl-o-phenylenediamine, 4-Methyl-o-phenylenediamine, 4-Nitro-o-phenylenediamine, p-phenylenediamine, N-phenyl-p-phenylenediamine, 2,6- dichloro-p-phenylenediamine, 2,3,5,6-tetramethyl-p-phenylenediamine, respectively) have been examined under nitrogen in THF solution. The novel dioxomolybdenum complexes were characterized by elemental analysis, FT-IR, 1H-NMR and 13C-NMR spectroscopy. In addition, molecular mechanics and quantum chemical calculations including semi empirical PM3 and DFT methods were carried out to discuss the stability of the compounds.
  • Master Thesis
    Snythesis and Spectroscopic Characterization of Some New [tris (3,5-Dimethyl Borato] Molybdebum Complexex
    (Izmir Institute of Technology, 2003) İrdem, Seçkiner Dülger; Sözüer, Işıl; Topaloğlu Sözüer, Işıl; 04.01. Department of Chemistry; 04. Faculty of Science; 01. Izmir Institute of Technology
    In this study, the new binuclear oxo bridged imido Mo(V) complexes [MoTp*(O)Cl](µ-O)[MoTp*(Cl)(≡NC6H4X)], (p-X = Cl, Br) and [MoTp*(O)Cl](µ-O) [MoTp*(Cl)(≡NC6H4Y)], (m-Y = I, F) have been synthesized by the reaction oxo molybdenum (V) precursor [MoTp*(O)Cl2]; [Tp* = Tris(3, 5-dimethyl-pyrazol)borato] with p- and m- functionalized anilines, H2NC6H4X and H2NC6H4Y (p-X = Cl, Br; m-Y=I, F) in toluene solution. The complexes have been characterised by 1 H-NMR, IR spectroscopy and FABMassspectrometry. The structures of [MoTp*(O)Cl](µ-O)[MoTp*(Cl)(≡NC6H4X)], (p-X = Br) and [MoTp*(O)Cl](µ-O)[MoTp*(Cl)(≡NC6H4Y)], (m-Y = I, F) have been characterised by X-Ray diffaction method.
  • Master Thesis
    Synthesis, Characterization and Computational Studies of Oxomolybdenum Compounds With Nitrogen Donor Ligands
    (Izmir Institute of Technology, 2010) Kıyak, Harika; Sözüer, Işıl; Topaloğlu Sözüer, Işıl; 04.01. Department of Chemistry; 04. Faculty of Science; 01. Izmir Institute of Technology
    In the first part of the project, the reactions of the solvent-stabilized compound [MoO2Cl2(THF)2] with varios phenylenediamine and some napthalenediamin derivatives in THF at room temperature were investigated. These reactions yielded mononuclear and dinuclear compounds of the type [MoO2Cl2L] and [Mo2O3(.2- O)Cl4(L)2] respectively. In the second part, the reactions of [Mo2O3Cl4(DMF)4] with phenylenediamine and napthalenediamin derivatives were studied under similar conditions and Mo-O-Mo bridged dinuclear oxomolybdenum compounds of the type [Mo2O3(.2-O)Cl4(L)] were obtained. The new compounds were comparatively examined by elemental analysis, FTIR, 1H-NMR and 13C-NMR techniques. In addition, quantum chemical calculations including semi empirical PM3 and DFT methods were carried out to discuss the stability and geometry of the compounds.
  • Master Thesis
    Synthesis and Characterization Oxo-Imido [tris (3,5-Dimethyl Borate] Molybdenum Complexes
    (Izmir Institute of Technology, 2004) Şahin, Engin; Sözüer Topaloğlu, Işıl; 01. Izmir Institute of Technology
    In this study two new reactions related to oxo-Molybdenum(V)trispyrazolyl chemistry were investigated. The reactions between [MoTp*(O)Cl2] with o-substituted anilines, H2NC6H4X-o (X. Cl, Br) in the presence of triethylamine in toluene carried out to prepare dinuclear oxo-imido Mo(V) complexes of the type [MoTp*(O)Cl](.-O)[MoTp(Cl)(.NC6H4X-o)]. Surprisingly, the previously reported compound, [MoTp*(O)Cl]2(.-O)], was obtained as the major product of both reactions. The compound [MoTp(O)Cl]2(.-O)] was characterized by 1H-NMR; IR, UV-visible spectroscopy techniques.