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硅取代羟基磷灰石的化学表征

Chemical characterization of silicon-substituted hydroxyapatite.

作者信息

Gibson I R, Best S M, Bonfield W

机构信息

IRC in Biomedical Materials, Queen Mary and Westfield College, Mile End Road, London, E1 4NS, United Kingdom.

出版信息

J Biomed Mater Res. 1999 Mar 15;44(4):422-8. doi: 10.1002/(sici)1097-4636(19990315)44:4<422::aid-jbm8>3.0.co;2-#.

Abstract

Bioceramic specimens have been prepared by incorporating a small amount of silicon (0.4 wt %) into the structure of hydroxyapatite [Ca10(PO4)6(OH)2, HA] via an aqueous precipitation reaction to produce a silicon-substituted hydroxyapatite (Si-HA). The results of chemical analysis confirmed the proposed substitution of the silicon (or silicate) ion for the phosphorus (or phosphate) ion in hydroxyapatite. The Si-HA was produced by first preparing a silicon-substituted apatite (Si-Ap) by a precipitation process. A single-phase Si-HA was obtained by heating/calcining the as-prepared Si-Ap to temperatures above 700 degrees C; no secondary phases, such as tricalcium phosphate (TCP), tetracalcium phosphate (TeCP), or calcium oxide (CaO), were observed by X-ray diffraction analysis. Although the X-ray diffraction patterns of Si-HA and stoichiometric HA appeared to be identical, refinement of the diffraction data revealed some small structural differences between the two materials. The silicon substitution in the HA lattice resulted in a small decrease in the a axis and an increase in the c axis of the unit cell. This substitution also caused a decrease in the number of hydroxyl (OH) groups in the unit cell, which was expected from the proposed substitution mechanism. The incorporation of silicon in the HA lattice resulted in an increase in the distortion of the PO4 tetrahedra, indicated by an increase in the distortion index. Analysis of the Si-HA by Fourier transform infrared (FTIR) spectroscopy indicated that although the amount of silicon incorporated into the HA lattice was small, silicon substitution appeared to affect the FTIR spectra of HA, in particular the P-O vibrational bands. The results demonstrate that phase-pure silicon-substituted hydroxyapatite may be prepared using a simple precipitation technique.

摘要

通过水相沉淀反应将少量硅(0.4 wt%)引入羟基磷灰石[Ca10(PO4)6(OH)2, HA]结构中,制备了生物陶瓷样品,以生产硅取代的羟基磷灰石(Si-HA)。化学分析结果证实了在羟基磷灰石中硅(或硅酸盐)离子对磷(或磷酸盐)离子的取代。Si-HA是通过沉淀法首先制备硅取代的磷灰石(Si-Ap)来生产的。通过将制备好的Si-Ap加热/煅烧至700摄氏度以上获得单相Si-HA;X射线衍射分析未观察到二次相,如磷酸三钙(TCP)、磷酸四钙(TeCP)或氧化钙(CaO)。尽管Si-HA和化学计量比HA的X射线衍射图谱看起来相同,但对衍射数据的细化揭示了这两种材料之间的一些小结构差异。HA晶格中的硅取代导致晶胞a轴略有减小,c轴增加。这种取代还导致晶胞中羟基(OH)基团数量减少,这与提出的取代机制预期一致。HA晶格中硅的掺入导致PO4四面体畸变增加,这由畸变指数增加表明。通过傅里叶变换红外(FTIR)光谱对Si-HA进行分析表明,尽管掺入HA晶格中的硅量很少,但硅取代似乎会影响HA的FTIR光谱,特别是P-O振动带。结果表明,可以使用简单的沉淀技术制备相纯的硅取代羟基磷灰石。

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