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Synthesis, characterization, and dispersion properties of hydroxyapatite prepared by mechanochemical-hydrothermal methods

机译:机械化学-水热法制备的羟基磷灰石的合成,表征与分散性能

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摘要

Thermodynamic modeling was utilized to identify reaction conditions to prepare phase-pure hydroxyapatite particulates (HA) by mechanochemical-hydrothermal (M-H) methods using Ca(OH)(2) and (NH4)(2)HPO4 as precursors. The resulting HA powders were characterized by X-ray diffraction, infra-red spectroscopy, thermogravimetry, and transmission electron microscopy, nitrogen adsorption and dynamic light scattering methods. Choosing reaction conditions in the 99% yield region of the CaO-P2O5-NH4OH-H2O phase-pure equilibrium system, nearly stoichiometric and nanostructured HA powders were prepared at room temperature in as little as 1 h. The minimum time to obtain phase-pure HA was 8 h from the conventional attrition mill. As-prepared powders were found to be highly agglomerated with a mass-weighted mean diameter of 2.6 mum in deionized water and average agglomeration number (AAN) as high as 4.5x10(6). Dispersion studies revealed that the appropriate use of dispersants could reduce the mass-weighted mean diameter and AAN. In the presence of sodium polyacrylate, the mass-weighted mean diameter and AAN were 217 nm and 1600, respectively.
机译:利用热力学模型来确定反应条件,以Ca(OH)(2)和(NH4)(2)HPO4为前体,通过机械化学-水热(M-H)方法制备纯相羟基磷灰石颗粒(HA)。通过X射线衍射,红外光谱,热重分析,透射电子显微镜,氮吸附和动态光散射方法对所得的HA粉末进行表征。选择CaO-P2O5-NH4OH-H2O相-纯平衡体系的99%收率区域中的反应条件,在室温下仅用1小时即可制备出近化学计量和纳米结构的HA粉。从常规磨碎机获得纯HA的最短时间为8小时。发现制备好的粉末在去离子水中高度团聚,质量加权平均直径为2.6微米,平均团聚数(AAN)高达4.5x10(6)。分散研究表明,适当使用分散剂可以降低质量加权平均直径和AAN。在聚丙烯酸钠存在下,质量加权平均直径和AAN分别为217 nm和1600。

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