FTIR and Raman spectra of bioceramics obtained by an innovative method
Autor: | Alessandro Bertoluzza, S. Cacciari, M. A. Morelli, M. Vasina, Anna Tinti |
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Rok vydání: | 1995 |
Předmět: |
Materials science
Biocompatibility Metaphosphate Biomedical Engineering Biophysics Analytical chemistry Bioengineering Bioceramic engineering.material Biomaterials symbols.namesake chemistry.chemical_compound Chemical engineering Coating chemistry symbols engineering Fourier transform infrared spectroscopy Raman spectroscopy Chemical composition Stoichiometry |
Zdroj: | Journal of Materials Science: Materials in Medicine. 6:76-79 |
ISSN: | 1573-4838 0957-4530 |
DOI: | 10.1007/bf00120411 |
Popis: | Bioceramic coatings with defined chemical composition and structure are often needed to satisfy specific biocompatibility properties in the prosthetic field. An example is hydroxyapatite (HA) for coatings, which, according to the Standard Specifications of the ASTM, must be crystalline and have a stoichiometric molar ratio Ca/P=1.67 with a 95% minimum amount of HA. Since the methods (plasma flame spray, ion beam sputtering, etc.) to obtain bioceramic coatings, in particular those for HA, induce changes in the chemical composition, structure and physical state of the coating, an alternative and innovative method (the so-called polymeric route) which provides bioceramic coatings under less severe conditions with controlled chemical composition and structure, was used in this work. The method was applied to the preparation not only of HA, but also, for the first time, of high-temperature-melting calcium phosphate bioactive glasses with a molar ratio CaO/P2O5=1 (calcium metaphosphate) and in the range 1–1.5 (calcium oligophosphates). The different phases of the process were characterized by vibrational FTIR spectra. The structure of the final glasses were also studied by Raman spectroscopy and compared with the spectra of the same products obtained by the traditional melting method. |
Databáze: | OpenAIRE |
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