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首页> 外文期刊>Journal of Advanced Ceramics >Effect of different sol-gel synthesis processes on microstructural and morphological characteristics of hydroxyapatite-bioactive glass composite nanopowders
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Effect of different sol-gel synthesis processes on microstructural and morphological characteristics of hydroxyapatite-bioactive glass composite nanopowders

机译:不同溶胶 - 凝胶合成方法对羟基磷灰石 - 生物活性玻璃复合纳米粉末组织微观结构和形态学特性的影响

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The aim of this work was to study the influence of the different synthesis processes on microstructural and morphological characteristics and distribution of hydroxyapatite-bioactive glass (HAp-BG) composite nanopowders obtained by sol-gel method. HAp-BG composite nanopowders with 20 wt% bioactive glass were prepared using a sol-gel method via four routes: (I) mixing the prepared HAp solution with BG solution before aging time; (II) mixing the prepared BG solution with the prepared HAp gel after gelation; (III) mixing the calcined BG nanopowders with the prepared HAp solution; and (IV) mixing the two prepared calcined nanopowders by mechanochemical activation. The prepared nanopowders were evaluated and studied by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectrometer (EDS), Fourier transform infrared (FTIR), transmission electron diffraction (TEM) and Brunauer-Emmet-Teller (BET) method to investigate the phase structure, microstructure and morphology, functional groups, and the size and distribution of nanopowders. Results indicated that morphology, crystallinity, crystallite size and specific surface area (SSA) of the powders are highly correspondent to the process and type of synthesis method. These findings suggest that the modified sol-gel derived HAp-BG composite nanopowders are expected to efficiently provide a possibility to produce a good candidate to use for fabrication of a bulk nanostructured HAp-BG composite for bone tissue engineering.
机译:这项工作的目的是研究不同合成方法对通过溶胶 - 凝胶法得到的羟基磷灰石 - 生物活性玻璃(HAP-BG)复合纳米粉末的微观结构和形态特征和分布的影响。使用四条途径使用溶胶 - 凝胶法制备20wt%生物活性玻璃的Hap-Bg复合纳米粉末:(i)在老化时间之前将制备的Hap溶液与BG溶液混合; (ii)将制备的Bg溶液与制备的Hap凝胶混合在凝胶后; (iii)将煅烧的BG纳米粉末与制备的Hap溶液混合; (iv)通过机械化学活化将两种制备的煅烧纳米粉末混合。通过X射线衍射(XRD),扫描电子显微镜(SEM),能量分散X射线光谱仪(EDS),傅里叶变换红外(FTIR),透射电子衍射(FTIR),透射电子衍射(TEM)和Brunauer-Emmet进行评估制备的纳米粉末。 - 培养物(BET)方法,用于研究相结构,微观结构和形态,官能团,官能团和纳米摩擦机的尺寸和分布。结果表明,粉末的形态,结晶度,微晶尺寸和比表面积(SSA)对合成方法的方法和类型具有高度相对应的。这些发现表明,预期改性溶胶 - 凝胶衍生的HAP-BG复合纳米粉粉有效地提供用于制造用于制造骨组织工程的散装纳米结构HAP-BG复合材料的良好候选物的可能性。

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