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首页> 外文期刊>Crystal growth & design >Morphological Evolution of Hydroxyapatite Particles in the Presence of Different Citrate:Calcium Ratios
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Morphological Evolution of Hydroxyapatite Particles in the Presence of Different Citrate:Calcium Ratios

机译:不同柠檬酸盐/钙比例存在下羟基磷灰石颗粒的形貌演化

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This work is focused on the potential role of citrate-derived species as tailoring agents for the morphology of hydroxyapatite particles during their synthesis. Under hydrothermal conditions (T = 180 degrees C), precursor solutions with different initial citrate:calcium molar ratios (R) allow the nucleation and growth of hydroxyapatite particles whose final morphology shows a significant dependence on the initial citrate amount and growth time. Increasing R from 3:1 to 7:1 causes the morphology to evolve from needlelike- and rodlike-shaped nanoparticles toward larger microparticles with hedgehoglike or bundlelike aspects that are composed of assembled primary units. A strong decay of the specific surface area from 55 m(2)/g for nanometric particles (R = 3:1) down to 17 m(2)/g for microparticles (R = 7:1) also corroborates the morphological evolution. The evolution of the particle morphology is accompanied by citrate chemistry changes. As confirmed by Fourier transform IR spectroscopy and thermal analysis, citrate ions undergo thermal degradation during the synthesis process to generate smaller carboxylate-based species adsorbed on the particles' surfaces. The concentration of such species and their mode of coordination to the hydroxyapatite surface is R-dependent. Accordingly, it is suggested that these organics interplay differently with the growth of the developing hydroxyapatite structures, thereby affecting the final particle morphology.
机译:这项工作的重点是柠檬酸盐衍生物种在合成过程中作为羟磷灰石颗粒形态的调节剂的潜在作用。在水热条件下(T = 180摄氏度),具有不同初始柠檬酸盐:钙摩尔比(R)的前体溶液可以使羟基磷灰石颗粒成核和生长,其最终形态对初始柠檬酸盐量和生长时间有很大的依赖性。 R从3:1增加到7:1会导致形态从针状和棒状纳米粒子演变为具有刺猬状或束状形态且由组装的主要单元组成的较大微粒。比表面积从纳米粒子(R = 3:1)的55 m(2)/ g大幅下降到微米粒子(R = 7:1)的17 m(2)/ g的强烈衰减也证实了形态演变。颗粒形态的演变伴随着柠檬酸盐化学变化。正如傅里叶变换红外光谱和热分析所证实的那样,柠檬酸根离子在合成过程中会发生热降解,从而生成较小的基于羧酸盐的物质吸附在颗粒表面。此类物质的浓度及其与羟基磷灰石表面的配位模式是R依赖性的。因此,建议这些有机物与发展中的羟基磷灰石结构的生长不同地相互作用,从而影响最终的颗粒形态。

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