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XRD Analysis of Calcium Phosphate and Biocomposite Calcium Phosphate/Bioresorbable Polymer

机译:磷酸钙磷酸钙和生物复合磷酸钙/生物可见聚合物的XRD分析

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Composite biomaterials based on calcium phosphate ceramic due to their high bioactivity are of interest for biological application and bone tissue repair. Structural and microstructural parameters of inorganic constituent of these materials are very important for the synthesis and characterization of composites. Quantitative and qualitative content, crystallite size of phases, as well as the degree of crystallinity have a great influence on the quality of composites, their application and bone tissue repair. X-ray diffractometry was employed to investigate the components of biocomposite materials, calcium phosphate (CaP) ceramic and poly-DL-lactide-co-glycolide (DLPLG) polymer, as well as the biocomposite obtained from the mentioned components. Composite biomaterial was obtained by modified emulsion process. Using the Rietveld refinement, we analyzed CaP as an inorganic component of the composite, whence we have determined structural and microstructural properties of ceramic component of the investigated composite. The results obtained by structure refinement show that calcium phosphate ceramic materials synthesized at room temperature contain hydroxyapatite HAp as a predominant phase. The calculated Ca/P ratio is 1.667. The Rietveld analysis revealed lattice parameters a(A)=9.4324(7) and c(A)=6.8785(6) that are in agreement with the theoretical values.
机译:基于磷酸钙陶瓷的复合生物材料由于其高生物活性而对生物应用和骨组织修复感兴趣。这些材料的无机成分的结构和微观结构参数对于合成和表征复合材料的合成和表征非常重要。定量和定性含量,阶段的微晶尺寸,以及结晶度对复合材料的质量有很大影响,它们的应用和骨组织修复。使用X射线衍射测定法研究生物复合材料,磷酸钙(帽)陶瓷和聚-DL-丙交酯 - 共乙酰基(DLPLG)聚合物的组分,以及由所述组分获得的生物复合材料。通过改性的乳液法得到复合生物材料。使用RIETVELD改进,我们分析了CAP作为复合材料的无机组分,因此我们已经确定了所研究复合材料的陶瓷组分的结构和微观结构性能。通过结构细化获得的结果表明,在室温下合成的磷酸钙陶瓷材料含有羟基磷灰石Hap作为主要阶段。计算的CA / P比率为1.667。 RIETVELD分析显示了与理论值一致的晶格参数A(a)= 9.4324(7)和C(a)= 6.8785(6)。

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