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Preparation and Characterisation of Hydroxyapatite and Carbonate Substituted Hydroxyapatite Granules

机译:羟基磷灰石和碳酸盐替代羟基磷灰石颗粒的制备与表征

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Phase pure hydroxyapatite and a high purity mixed AB-type carbonate substituted hydroxyapatite (CHA) were synthesised by precipitation reactions. The CHA was produced in the absence of sodium and ammonium ions which are normally introduced into the precipitation reaction to maintain charge balance [1,2]. Both the HA and CHA filter cakes were processed into granules of three different size ranges (212-500μm, 500μm-lmm, 1-2mm). The granules were sintered and underwent full structural characterisation. Both sets of granules exhibited similar morphologies and were acicular in shape. The apparent density (97-98/100) and the packing densities of the two sets of granules were similar (50-55/100). Comparable packing densities are important for in-vivo studies since this allows direct comparison of chemical effects when the same mass of granules can be implanted into a standard volume implant site. In this study we have seen granules of HA and CHA produced which have similar physical properties with the only difference being the effect of carbonate substitution in CHA.
机译:通过沉淀反应合成了相纯的羟基磷灰石和高纯度的混合AB型碳酸盐取代的羟基磷灰石(CHA)。 CHA是在不存在钠离子和铵离子的情况下产生的,通常不将钠离子和铵离子引入沉淀反应中以保持电荷平衡[1,2]。将HA和CHA滤饼都加工成三种不同尺寸范围(212-500μm,500μm-1mm,1-2mm)的颗粒。将颗粒烧结并进行完整的结构表征。两组颗粒均表现出相似的形态并且呈针状。两组颗粒的表观密度(97-98 / 100)和堆积密度相似(50-55 / 100)。可比的堆积密度对于体内研究很重要,因为当可以将相同质量的颗粒植入标准体积的植入部位时,这可以直接比较化学作用。在这项研究中,我们看到产生的HA和CHA颗粒具有相似的物理特性,唯一的区别是CHA中碳酸盐取代的影响。

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