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XRD Analysis of Calcined Magnesium Substituted Biphasic Calcium Phosphate (Mg-BCP)

机译:煅烧镁取代双相磷酸钙XRD分析(MG-BCP)

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The incorporation of magnesium (Mg) in biphasic calcium phosphate (BCP) was prepared through precipitation method. The concentration of added Mg was varied with respect to calcium (Ca) precursor molarity as such Mg/Ca molar ratio were 0.05 and 0.1, while the (Ca + Mg)/P ratio was maintained at 1.59 throughout the experiment to ensure that calcium deficient apatite was formed. Precipitate obtained was aged for 24 h in ambient condition followed by decantation, centrifugation and drying at 90°C overnight. The as-synthesized powders were calcined at 600°C and characterized by X-ray diffraction (XRD) via Rietveld refinement (X'Pert HighScore Plus software). Both as-synthesized and calcined Mg-BCP powder contains hydroxyapatite (HA) and beta-tricalcium phosphate (β-TCP) phase with Mg in its lattice. The substitution of Mg in calcium-deficient apatite resulted in the formation of biphasic mixtures of β-TCP/HA after calcinations with shifted peaks β-TCP when compared to reference β-TCP peaks. High deficiency of calcium in apatite enables more substitution of magnesium thus stabilizing β-TCP phase when subjected to high temperature.
机译:通过沉淀法制制备镁(Mg)在双相磷酸钙(BCP)中的掺入。随着钙(Ca)前体摩尔相对于这种Mg / Ca摩尔比为0.05和0.1,加入的Mg的浓度变化,而在整个实验中保持(Ca + Mg)/ P比在1.59中保持,以确保缺陷磷灰石形成。在环境条件下获得24小时的沉淀,然后在90℃下倾析,离心并干燥过夜。在600℃下煅烧如合成的粉末,并通过RIETVELD细化的X射线衍射(XRD)以X射线衍射(X'pert Highscore Plus软件)为特征。合成和煅烧的Mg-BCP粉末均含有羟基磷灰石(HA)和β-三钙(β-TCP)相,其晶格中的Mg。与参考β-TCP峰相比,钙缺乏磷灰石中的钙缺乏磷灰石中的β-TCP / HA的双相混合物形成,与参考β-TCP峰值相比,在钙β-TCP的煅烧后形成。磷灰石中钙的高缺乏使得能够在受到高温时稳定β-TCP相位的更多镁。

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