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The Effect of Reaction Conditions on Hydroxyapatite Particle Morphology and Applications to the Reticulated Foam Method of Scaffold Production

机译:反应条件对羟基磷灰石颗粒形态的影响及其在网状泡沫支架生产方法中的应用

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The production of nano-scale hydroxyapatite (HA) suspensions to be used for the reticulated foam method of scaffold production was investigated at temperatures of between 10 and 60°C. An increase in reaction temperature was associated with an increase in the particle size and some decrease in the aspect ratio of the particles. Pre-treatment of the polyurethane foam template using PPDS (potassium peroxodisulfate) solution resulted in a significantly improved coating of HA when compared to the untreated samples or those treated with ethanol. Initial trials coating the polyurethane with HA produced at the different reaction temperatures showed a superior coating with the suspension produced at 10°C compared to that at 60°C. A scaffold was produced using the HA suspension produced at room temperature, but further understanding of the suspension properties and the optimum conditions for coating of the PU foam are required for improved mechanical performance.
机译:在10至60°C的温度下研究了用于网状泡沫支架生产方法的纳米级羟基磷灰石(HA)悬浮液的生产。反应温度的升高与粒径的增加和颗粒的长径比的降低有关。与未处理的样品或用乙醇处理的样品相比,使用PPDS(过二硫酸钾)溶液对聚氨酯泡沫模板进行预处理可显着改善HA的涂层。用在不同反应温度下生产的HA涂覆聚氨酯的初步试验表明,与60°C相比,在10°C生产的悬浮液具有优异的涂覆性能。使用在室温下生产的HA悬浮液生产了脚手架,但是需要进一步了解悬浮液的性能以及涂覆PU泡沫的最佳条件,以改善机械性能。

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