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Bioactivity Assessment of Hydroxyapatite Coatings Produced by Alkali Conversion of Monetite

机译:碱磷酸铁矿石涂层的生物活性评价

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Commercially pure titanium sheets were coated with hydroxyapatite using three different routes: alkali conversion of monetite to hydroxyapatite utilising NH_4OH, KOH and NaOH solutions with pH=12.5. The hydroxyapatite coatings produced by each of the three different routes all exhibited similar morphologies and crystallinities, and hydroxyapetite was the only crystalline phase observed in all the coatings. The crystallinity and identification of the phases present were obtained by X-ray diffraction (XRD) analysis and the bioactivity was assessed according to the method developed by KOKUBO and co-workers (1). SEM analysis showed that all specimens exhibited areas with apatite precipitation from the SBF solution after 3 days immersion in SBF solution, irrespective of the alkaline solution used for the conversion process. This finding was confirmed by XRD analysis, which revealed a pattern corresponding to poorly-crystallinity hydroxyapatite There appeared to be no effect of the ammonium, sodium or potassium ions from the different alkaline solutions used on the chemical conversion of monetite to hydroxyapatite on the properties of the resulting coating.
机译:商用纯钛片材涂覆有羟基磷灰石使用三种不同的途径:斜磷钙石的碱转化为羟基磷灰石利用NH_4OH,KOH和NaOH溶液在pH = 12.5。通过分别在三个不同的途径都表现出相似的形态和结晶度的所产生的羟基磷灰石涂层,以及hydroxyapetite在所有涂层所观察到的唯一晶相。相本的结晶度和识别是由X射线衍射(XRD)分析,根据通过小久保和同事(1)开发的方法获得的和生物活性进行了评估。 SEM分析表明,所有的样品表现出与区域从3天后浸渍于SBF溶液中的溶液SBF磷灰石沉淀内,无论用于转化过程中的碱性溶液。这一发现已被X射线衍射分析,其显示对应于图案证实难溶结晶羟基磷灰石似乎有从上斜磷钙石的化学转化用羟基磷灰石上的性质不同的碱性溶液没有铵,钠或钾离子的作用所得到的涂层。

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