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Synthesis and characterization of porous structures of rutile TiO 2 /Na 0.8Ti 4O 8/Na 2Ti 6O 13 for biomedical applications

机译:金红石型TiO 2 / Na 0.8 Ti 4 O 8 / Na 2 Ti 6 O 13 用于生物医学

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This method involves the use of molding, pressing and sintering techniques applied to different powder mixtures of TiO2with sodium bicarbonate NaHCO3(15?wt% and 30?wt% NaHCO3), to obtain porous structures of rutile TiO2/Na0.8Ti4O8/Na2Ti6O13and Na0.8Ti4O8/Na2Ti6O13for possible biomedical implant applications. The method validation includes X-ray diffraction patterns (XRD) analysis refined by the Rietveld method using X'Pert HighScore Plus. The surface morphology was observed by using a scanning electron microscopy (SEM) equipped with an energy dispersive spectrometer (EDS), and, finally, a Chinese hamster ovary (CHO) cell line was cultured with the porous structures to determine the effect of material composition on the cellular response using a LDH cytotoxicity assay.?The method does not require the use of toxic solvents to remove residues.?The porous structure formed is composed mainly of crystalline phases Na2Ti6O13/TiO2reported as biocompatible.?It did not need complicated solid-liquid separation processes.
机译:该方法涉及使用模制,压制和烧结技术,将其应用于TiO2与碳酸氢钠NaHCO3(15wt%和30wt%NaHCO3)的不同粉末混合物,以获得金红石TiO2 / Na0.8Ti4O8 / Na2Ti6O13和Na0的多孔结构。 8Ti4O8 / Na2Ti6O13用于可能的生物医学植入物应用。方法验证包括使用X'Pert HighScore Plus通过Rietveld方法精制的X射线衍射图(XRD)分析。使用配备有能量色散光谱仪(EDS)的扫描电子显微镜(SEM)观察表面形态,最后,用多孔结构培养中国仓鼠卵巢(CHO)细胞系以确定材料组成的影响该方法不需要使用有毒溶剂去除残留物。形成的多孔结构主要由据称具有生物相容性的Na2Ti6O13 / TiO2结晶相组成。不需要复杂的固体成分。液体分离过程。

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