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Solvothermal synthesis and structural characterization of three polyoxotitanium-organic acid clusters.
Kazimierczuk, Katarzyna; Milanesio, Marco; Dolega, Anna; Palin, Luca; Walencik, Maja; Jurkowski, Michal; Conterosito, Eleonora.
Afiliación
  • Kazimierczuk K; Department of Inorganic Chemistry, Chemical Faculty, Gdansk University of Technology Narutowicza St. 11/12 80-233 Gdansk Poland.
  • Milanesio M; Dipartimento di Scienze e Innovazione Tecnologica Via T. Michel 11 15121 Alessandria Italy eleonora.conterosito@uniupo.it.
  • Dolega A; Department of Inorganic Chemistry, Chemical Faculty, Gdansk University of Technology Narutowicza St. 11/12 80-233 Gdansk Poland.
  • Palin L; Dipartimento di Scienze e Innovazione Tecnologica Via T. Michel 11 15121 Alessandria Italy eleonora.conterosito@uniupo.it.
  • Walencik M; Nova Res s.r.l. Via D. Bello 3 28100 Novara Italy https://www.novares.org.
  • Jurkowski M; Department of Inorganic Chemistry, Chemical Faculty, Gdansk University of Technology Narutowicza St. 11/12 80-233 Gdansk Poland.
  • Conterosito E; Department of Inorganic Chemistry, Chemical Faculty, Gdansk University of Technology Narutowicza St. 11/12 80-233 Gdansk Poland.
RSC Adv ; 11(40): 25068-25078, 2021 Jul 13.
Article en En | MEDLINE | ID: mdl-35481040
ABSTRACT
Three new titanium oxo-clusters Ti4O2(OiPr)10(OOCPhMe)2 (I), Ti6O4(OEt)8(OOCPhMe)8 (II) and Ti6O6(OEt)6(OOCCHPh2)6 (III) were obtained by easy one-step solvothermal reactions of titanium(iv) isopropoxide, alcohols and carboxylic acids. The three compounds were characterized by single-crystal and powder X-ray diffraction, TGA/DSC, optical and electron microscopy, and FTIR and NMR spectroscopy. X-ray powder diffraction and spectroscopy confirmed the purity of the compounds. Structural analysis indicates that in all compounds the titanium(iv) ions are six-coordinated (distorted octahedra). (I) is a tetranuclear complex containing a Ti4(µ4-O)(µ2-O) core, which is linked by two (µ2-OOCPhMe), four (µ2-OiPr) and six OiPr ligands. (II) and (III) are hexanuclear complexes with different cores, respectively Ti6(µ3-O)2(µ2-O)2 and Ti6(µ3-O)6. The coordination sphere of the Ti atoms is filled by eight (µ2-OOCPhMe), two (µ2-OEt) and six OEt in (II) and six (µ2-OOCHPh2) and six OEt in (III). Different steric hindrance of substituents attached to the carboxyl group or different concentrations lead to three main different cluster geometries with two ligands. The tetranuclear and the hexanuclear clusters were obtained with the OOCPhMe ligand, while the hexagonal prism cluster was obtained with the OOCCHPh2 ligand. Hirshfeld surface calculations indicated that the packing is driven by C-O⋯H-C weak hydrogen bonds. The clusters can be used as molecular models of organic molecules bonded to titania surface, used in organic photovoltaic (dye sensitized solar cells) or other optoelectronic applications.

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2021 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2021 Tipo del documento: Article