CIRIMAT Carnot Institute, UMR CNRS/INPT/UPS, University of Toulouse, Toulouse, France.
J Mater Sci Mater Med. 2012 Nov;23(11):2593-606. doi: 10.1007/s10856-012-4719-y. Epub 2012 Jul 17.
Nanocrystalline apatites are major constituents of hard tissues, and attempts are made worldwide to prepare synthetic analogs. However the impact of synthesis/postsynthesis parameters is often disregarded. Based on an updated knowledge on such compounds, we inspected the effects of synthesis parameters (maturation time, temperature, pH, nature of counter-ions) and post-treatments (re-immersion in aqueous media, thermal treatment) on physicochemical characteristics. Great modifications were noticed during the 3 first days of maturation, where a progressive evolution of the apatite phase (localized in the core of the nanocrystals) toward stoichiometry was observed at the expense of the non-apatitic surface layer which progressively disappears. Similar trends were also evidenced for maturation run under increasing temperatures, studied here in the range 20-100 °C. pH impacted more specifically the chemical composition. The nature of the counter-ion in the starting phosphate salt influenced composition and nonstoichiometry, depending on its (in)ability to be incorporated in the lattice. Freeze-drying allowed to preserve a high surface reactivity, although further evolutions were noticed after re-immersion. Effects of a thermal treatment of dried samples were unveiled, suggesting a denaturation of the hydrated layer on the nanocrystals. This work underlines the necessity of a good control of synthesis/postsynthesis parameters for the production of biomimetic apatites.
纳米磷灰石是硬组织的主要成分,全世界都在尝试制备合成类似物。然而,合成/后合成参数的影响往往被忽视。基于对这些化合物的最新认识,我们检查了合成参数(成熟时间、温度、pH 值、抗衡离子的性质)和后处理(重新浸入水介质、热处理)对物理化学特性的影响。在成熟的头三天中,我们注意到了很大的变化,其中观察到磷灰石相(局部存在于纳米晶体的核心)朝着化学计量的方向逐渐演变,而无磷灰石的表面层逐渐消失。在 20-100°C 的范围内研究了温度升高下的成熟运行,也证明了类似的趋势。pH 值更具体地影响了化学组成。起始磷酸盐盐中抗衡离子的性质影响组成和非化学计量比,这取决于其(是否)能够掺入晶格中。冷冻干燥允许保留高的表面反应性,尽管在重新浸入后仍注意到进一步的演变。干燥样品的热处理效果被揭示出来,表明纳米晶体上水合层的变性。这项工作强调了为生产仿生磷灰石,需要对合成/后合成参数进行良好的控制。