Rintoul Llew, Wentrup-Byrne Edeline, Suzuki Shuko, Grøndahl Lisbeth
Tissue BioRegeneration and Integration Program, Science Research Centre, Queensland University of Technology, Brisbane, QLD, Australia.
J Mater Sci Mater Med. 2007 Sep;18(9):1701-9. doi: 10.1007/s10856-007-3052-3. Epub 2007 May 5.
Fluoro substituted hydroxyapatite (FHAp) samples were prepared by a cyclic pH method. Both calcined and uncalcined samples were subjected to elemental analysis (F, Ca, P) and X-ray diffraction (XRD) analysis to verify composition and phase purity. Good correlation between a-axis parameters and fluoride ion content was found for calcined samples, however, for uncalcined samples the fluoride ion content was higher than estimated from the a-axis values. Fourier transform infra red (FT-IR) spectroscopy analysis of the calcined samples showed OH band shifts and splitting in accordance with F-HO interactions affecting the OH vibration. We conclude that the OH libration (620-780 cm(-1) range) is more suited for estimation of fluoride ion content than the OH stretching. In contrast, uncalcined samples all displayed FT-IR spectra similar to that of hydroxyapatite (HAp) despite the presence of fluoride ions (18-73%). FT-IR emission spectroscopy was used to probe the changes occurring in the FT-IR spectra of HAp and FHAp samples upon heating. Interpretation of the spectral changes occurring during heating to 1,000 degrees C and subsequent cooling is given. Room temperature spectra of samples heated to various temperatures was used to determine the temperature necessary to produce FT-IR spectra displaying the expected OH bands. A model accounting for the combined observations is proposed.
通过循环pH法制备了氟取代羟基磷灰石(FHAp)样品。对煅烧和未煅烧的样品都进行了元素分析(F、Ca、P)和X射线衍射(XRD)分析,以验证其组成和相纯度。对于煅烧样品,发现a轴参数与氟离子含量之间具有良好的相关性,然而,对于未煅烧样品,氟离子含量高于根据a轴值估算的结果。煅烧样品的傅里叶变换红外(FT-IR)光谱分析表明,由于F-HO相互作用影响OH振动,OH带发生了位移和分裂。我们得出结论,与OH伸缩振动相比,OH摆动(620 - 780 cm(-1)范围)更适合用于估算氟离子含量。相反,尽管存在氟离子(18 - 73%),未煅烧样品的FT-IR光谱都与羟基磷灰石(HAp)的相似。FT-IR发射光谱用于探测HAp和FHAp样品在加热时FT-IR光谱中发生的变化。给出了对加热到1000℃及随后冷却过程中发生的光谱变化的解释。利用加热到不同温度的样品的室温光谱来确定产生显示预期OH带的FT-IR光谱所需的温度。提出了一个解释综合观测结果的模型。