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不同氟含量合成氟羟磷灰石中β-TCP 相的形成机制。

The formation mechanism of the beta-TCP phase in synthetic fluorohydroxyapatite with different fluorine contents.

机构信息

School of Chemical Engineering and Technology, Harbin Institute of Technology, Harbin 150001, People's Republic of China.

出版信息

Biomed Mater. 2010 Aug;5(4):045011. doi: 10.1088/1748-6041/5/4/045011. Epub 2010 Jul 19.

Abstract

Synthetic hydroxyapatite (HAP) and fluorohydroxyapatite (F(x)AP) products may form the beta-tricalcium phosphate (beta-TCP) phase in a calcination process. The beta-TCP phase has a greater tendency for degradation in vivo than HAP and F(x)AP. Hence, controlling the content of the beta-TCP phase in the apatite is a pivotal factor to affect their lifetime and stability in vivo. It is particularly important to explore the formation mechanism of the beta-TCP phase in synthetic apatite. In this work, F(x)AP products with a chemical composition of Ca(10)(PO(4))(6)(OH)(2-x)F(x) are synthesized, with x = 0, 0.4, 0.8, 1.2, 1.6 and 2.0, using a precipitation method and a calcination process. The effect of fluorine substitution for hydroxyl is investigated by using x-ray diffraction analysis, Fourier transform infrared spectroscopy, and thermogravimetry and differential thermal analysis. The results show that addition of fluorine forms F(x)AP that exhibits high thermal stability. The beta-TCP phase produced as a result of the structural refinement by heat treatment is gradually reduced and dramatically suppressed with the fluorine content.

摘要

合成的羟基磷灰石(HAP)和氟羟基磷灰石(F(x)AP)产品在煅烧过程中可能会形成β-磷酸三钙(β-TCP)相。β-TCP 相比 HAP 和 F(x)AP 更易在体内降解。因此,控制磷灰石中β-TCP 相的含量是影响其在体内寿命和稳定性的关键因素。探索合成磷灰石中β-TCP 相的形成机制尤为重要。本工作采用沉淀法和煅烧工艺合成了化学组成为 Ca(10)(PO(4))(6)(OH)(2-x)F(x)的 F(x)AP 产品,其中 x = 0、0.4、0.8、1.2、1.6 和 2.0。利用 X 射线衍射分析、傅里叶变换红外光谱和热重差热分析研究了氟取代羟基的影响。结果表明,氟的添加形成了 F(x)AP,表现出较高的热稳定性。热处理引起的结构细化会产生β-TCP 相,随着氟含量的增加,β-TCP 相逐渐减少并受到显著抑制。

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