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Wollastonite - Tricalcium Phosphate Glass-Ceramics of Eutectic Composition Synthesized by the Glass-Crystallization Method

机译:硅灰石-磷酸三钙微晶玻璃共晶组成的微晶玻璃

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Glass-ceramics of eutectic composition in the wollastonite [W, CaO·SiO_2]- tricalcium phosphate [TCP, β-Ca_3(PO_4)_2] binary system were synthesized by using the glass-crystallization method. The parent glass was crystalized at 800-1300 °C for 0.5-5 h. The in vitro bioactivity of the synthesized glass-ceramics was tested in Kokubo's Simulated Body Fluid (SBF) for 7-21 days, at pH = 7.4 and 37 °C. All materials were characterized by X-Ray Diffraction (XRD) and Scanning Electron Microscopy (SEM/EDS). The results showed that metastable Apatite phase [Ap, Ca_(10)(PO_4)_6O], plus W and TCP phases expected according to the binary phase diagram, were formed. Ap was the first phase formed at 900 °C/0.5 h, which was followed by formation of W phase at 900 °C/2 h and of TCP phase at 1200 °C/0.5 h. The relative proportion of the formed crystalline phases was a function of heat treatment temperature and time. A eutectic microstructure was obtained for the materials heat-treated at 1300 °C for 2 or 5 h. All glass-ceramics showed the formation of a hydroxyapatite (HAp)-like layer during the in vitro bioactivity tests. After 21 days of soaking in SBF, the samples treated at 1300 °C/5 h showed a behavior similar to that typically shown by Bioeutectic* material, while the materials heat-treated at lower temperatures tended to form denser HAp-like layers, with similar thicknesses but with higher Ca/P molar ratios.
机译:利用玻璃结晶法合成了硅灰石[W,CaO·SiO_2]-磷酸三钙[TCP,β-Ca_3(PO_4)_2]二元体系中的共晶玻璃微晶。母玻璃在800-1300℃下结晶0.5-5小时。在Kokubo的模拟体液(SBF)中,在pH = 7.4和37°C的条件下,对合成的玻璃陶瓷的体外生物活性进行了7-21天的测试。所有材料均通过X射线衍射(XRD)和扫描电子显微镜(SEM / EDS)进行表征。结果表明,形成了亚稳态的磷灰石相[Ap,Ca_(10)(PO_4)_6O],以及根据二元相图预期的W和TCP相。 Ap是在900°C / 0.5 h形成的第一相,然后在900°C / 2 h形成W相,在1200°C / 0.5 h形成TCP相。形成的结晶相的相对比例是热处理温度和时间的函数。获得了在1300°C热处理2或5 h的材料的共晶组织。在体外生物活性测试过程中,所有玻璃陶瓷均显示出羟基磷灰石(HAp)样层的形成。在SBF中浸泡21天后,在1300°C / 5 h处理的样品表现出与Bioeutectic *材料通常表现出的相似行为,而在较低温度下进行热处理的材料则倾向于形成更致密的HAp样层,相似的厚度,但具有较高的Ca / P摩尔比。

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