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首页> 外文期刊>CERAMICS INTERNATIONAL >Tailoring the morphological features of hydrothermally synthesized mesoporous hydroxyapatite using polyphenols and phosphate sources
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Tailoring the morphological features of hydrothermally synthesized mesoporous hydroxyapatite using polyphenols and phosphate sources

机译:使用多酚和磷来源来剪裁水热合成的中磷酸盐的形态学特征

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摘要

Hydroxyapatite (HA) is a well-known material for biomedical applications and its performance depends greatly on its morphological features. Therefore, preparation of mesoporous HA with high surface area and adsorption capacity is highly deserved. In this research, a hydrothermal approach to synthesize mesoporous HA without post-processing calcination step is presented. The possibility using different polyphenols to generate mesoporous HA as well as using different phosphate sources to tailor the morphological features of HA is investigated. The as-prepared mesoporous HA particles are characterized by XRD, FTIR, SEM, TEM, BET, and zeta potential. Besides, the impacts of HA morphological features on model drug Dox are also studied. It is expected the strong interaction between -OH of polyphenols and Ca2+ makes polyphenols molecules occupy the inner sites of growing HA particles. After the removal of polyphenols by hydrothermal treatment and ethanol extraction, the occupied sites are transformed into mesopores. The typical mesoporous HA generated in present work has a rod-like morphology with BET specific surface area of 106.6 m(2)/g and an average pore size of 14.4 nm.
机译:羟基磷灰石(HA)是用于生物医学应用的公知材料,其性能大大取决于其形态特征。因此,高度应得高度表面积和吸附能力的介孔HA的制备。在该研究中,介绍了在没有处理后煅烧步骤的情况下合成中孔HA的水热方法。使用不同多酚产生介孔HA的可能性以及使用不同的磷酸盐来源来定制HA的形态学特征。制备的介孔HA颗粒的特征在于XRD,FTIR,SEM,TEM,BET和Zeta电位。此外,还研究了HA形态特征对模型药物DOX的影响。预期多酚和Ca2 +之间的-OH之间的强相互作用使得多酚分子占据生长HA颗粒的内部位。通过水热处理和乙醇萃取去除多酚后,将占用位点转化为中孔。在本作工作中产生的典型的介孔HA具有棒状形态,BET比表面积为106.6μm(2)/ g,平均孔径为14.4nm。

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