Study of the properties of silica-modified hydroxyapatite with various contents of silicate ions synthesized in microwave field

L. A. Rasskazova, N. M. Korotchenko, V. V. Kozik, V. K. Ivanov, L. P. Shilyaeva

    Research output: Contribution to journalArticle

    1 Citation (Scopus)

    Abstract

    The samples of silica-modified hydroxyapatite (SHA) with various contents of silicate ions have been synthesized via liquid-phase precipitation with the use of microwave radiation. The composition of obtained solid-phase products has been determined according to X-ray phase analysis and IR spectroscopy. The micromorphologies of SHA powders and their water solubility have been studied at pH 7 and 20°C.

    Original languageEnglish
    Pages (from-to)682-686
    Number of pages5
    JournalTheoretical Foundations of Chemical Engineering
    Volume48
    Issue number5
    DOIs
    Publication statusPublished - 1 Jan 2014

    Fingerprint

    Silicates
    Durapatite
    Hydroxyapatite
    Silicon Dioxide
    Silica
    Microwaves
    Ions
    Powders
    Infrared spectroscopy
    Solubility
    X rays
    Water
    Liquids
    Chemical analysis

    Keywords

    • dispersity
    • hydroxyapatite
    • IR spectroscopy
    • microwave synthesis
    • phase composition
    • silica hydroxyapatite
    • solubility

    ASJC Scopus subject areas

    • Chemical Engineering(all)
    • Chemistry(all)

    Cite this

    Study of the properties of silica-modified hydroxyapatite with various contents of silicate ions synthesized in microwave field. / Rasskazova, L. A.; Korotchenko, N. M.; Kozik, V. V.; Ivanov, V. K.; Shilyaeva, L. P.

    In: Theoretical Foundations of Chemical Engineering, Vol. 48, No. 5, 01.01.2014, p. 682-686.

    Research output: Contribution to journalArticle

    Rasskazova, L. A. ; Korotchenko, N. M. ; Kozik, V. V. ; Ivanov, V. K. ; Shilyaeva, L. P. / Study of the properties of silica-modified hydroxyapatite with various contents of silicate ions synthesized in microwave field. In: Theoretical Foundations of Chemical Engineering. 2014 ; Vol. 48, No. 5. pp. 682-686.
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    AU - Ivanov, V. K.

    AU - Shilyaeva, L. P.

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