• Title of article

    An investigation on the effect of acetone and DMF as solvent on synthesis of P2O5-CaO-Na2O-TiO2 glass powder by sol-gel method

  • Author/Authors

    Jalilpour ، Marzieh - University of Tabriz , Rezvani ، Mohammad - University of Tabriz , Farhadi ، Khalil - Urmia University

  • Pages
    7
  • From page
    43
  • To page
    49
  • Abstract
    The solgel synthesis method allows greater control over glass morphology at a relatively low processing temperature (200 °C) in comparison with melt-derived glasses. In present study, phosphatebased glasses with the general formula of (P2O5)55-(CaO)25(Na2O)10-(TiO2)10 was synthesized via a novel and facile solgel method for use in biomedical applications. For this purpose, dimethylformamide and acetone were used as the solvent. Glass powders that are obtained from the dried gel was analyzed using several characterization techniques including X-Ray Diffraction, Fourier Transform Infrared Spectroscopy, Simultaneous Thermal Analysis, Brunauer-Emmett-Teller surface area and porosity analyzer and Scanning Electron Microscopy. The X-Ray Diffraction results confirmed the amorphous and glassy nature of prepared samples. The Fourier Transform Infrared spectroscopy results revealed that by adding TiO2, titanium oxide (TiO6) entered into the network which likely acts as an oxide modifier. It was observed that crystallization temperature (Tc) for the sample synthesized by dimethylformamide (DMF) (~646 °C) is more than the one synthesized by acetone (~500 °C). The surface area of the acetone and DMF of synthesized samples is 40 m²/g and 44.5 m²/g, respectively. Furthermore, to examine the bioactive capacity of glasses, the samples were soaked in a simulated body fluid (SBF) for 7 days. The analyses were shown the formation of hydroxyapatite on glass powders after 7 days of immersion in SBF solution. The morphology of hydroxyapatite was spherical and its particle size was ~8 nm.
  • Keywords
    Phosphate , based glass , Sol , Gel , Acetone , Dimethylformamide , SBF
  • Journal title
    Advanced Ceramics Progress
  • Serial Year
    2018
  • Journal title
    Advanced Ceramics Progress
  • Record number

    2455235