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Preparation and characterization of carbonated barium-calcium hydroxyapatite solid solutions
Authors:Yasukawa Akemi  Ueda Eiichi  Kandori Kazuhiko  Ishikawa Tatsuo
Institution:School of Chemistry, Osaka University of Education, 4-698-1 Asahigaoka, Kashiwara-shi, Osaka 582-8582, Japan.
Abstract:Particles of carbonated barium-calcium hydroxyapatite solid solutions (BaCaHap) with different Ba/(Ba+Ca) (X(Ba)) atomic ratios were prepared by a wet method at 100 degrees C and characterized by various means. The crystal phases and structures of the products strongly depended on the composition of the starting solution, that is, the Ba/(Ba+Ca) atomic ratio (X(Ba)]) and H3PO4 concentration (H3PO4]) in the solution. BaCaHap with X(Ba)0.43 could be prepared at X(Ba)]0.7 by changing H3PO4], but could never be obtained at X(Ba)]=0.8-0.95 regardless of H3PO4]. The carbonated calcium hydroxyapatite particles prepared at X(Ba)]=0 were fine and short rod-shaped particles (ca. 14x84 nm). With increasing X(Ba)] from 0 to 0.8, the particles obtained became large spherical agglomerates. The carbonated barium hydroxyapatite particles formed at X(Ba)]=1 were long rod-shaped agglomerates (ca. 0.2x2 microm) of fine primary particles. The amount of CO2 adsorbed irreversibly on a series of BaCaHaps showed a minimum at (Ba+Ca)/(P+C) atomic ratio of around 1.56, which agreed well with the minimum cation/P ratio obtained for the other hydroxyapatites, as already reported.
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