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A metastable phase in thermal decomposition of Ca-deficient hydroxyapatite

机译:缺钙羟基磷灰石热分解中的亚稳态相

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We investigated the microstructural changes on an atomic length scale during thermal decomposition process of Ca-deficient hydroxyapatite (Ca-def HAp) by high-resolution transmission electron microscopy (HRTEM). Ca-def HAp was prepared by hydrolysis of α-tricalcium phosphate. The Ca-def HAp had a whisker-like morphology 2-5μm in length and 0.1μm in diameter that was elongated along c-axis. Thicker planer defects parallel to the (100) plane of the HAp matrix were observed as precipitation in the sample annealed at 700 and 800℃ by HRTEM observation. Thickness of the precipitation was about 10 nm and the boundaries between the precipitation and HAp matrix was coincident. The periodicity in the precipitation was parallel to the (100) plane of the HAp matrix and measured to be 1.42 nm. Since the precipitation was observed only in the sample annealed at a narrow temperature range of 700-800℃, it was regarded as a metastable phase formed on the thermal decomposition process. Absorption peaks in IR spectra of annealed Ca-def HAp containing the metastable phase appeared at 744 and 3538 cm~(-1) due to non-stoichiometric HAp with high Ca/P molar ratio. Furthermore, the results of energy dispersive X-ray spectroscopy showed that the metastable phase had higher Ca/P molar ratio than that of the matrix and stoichiometric HAp. Therefore, the metastable phase could be identified as Ca-rich metastable phase. The presence of Ca-rich metastable phase was confirmed to be associated with the thermal decomposition process.
机译:我们通过高分辨率透射电子显微镜(HRTEM)研究了缺钙的羟基磷灰石(Ca-def HAp)热分解过程中原子长度尺度上的微观结构变化。通过水解α-磷酸三钙制备Ca-def HAp。 Ca-def HAp的晶须状形态长度为2-5μm,直径为0.1μm,沿c轴伸长。 HRTEM观察到,在700和800℃退火的样品中,析出了平行于HAp基质(100)平面的较厚的平面缺陷。沉淀物的厚度为约10nm,并且沉淀物与HAp基质之间的边界重合。沉淀中的周期性平行于HAp基质的(100)平面,测量为1.42 nm。由于仅在700-800℃的窄温度范围内退火的样品中观察到沉淀,因此可以认为它是在热分解过程中形成的亚稳相。含亚稳相的Ca-def HAp退火后的IR光谱的吸收峰出现在744和3538 cm〜(-1)处,这是由于Ca / P摩尔比高的非化学计量的HAp所致。此外,X射线能谱分析的结果表明,亚稳相的Ca / P摩尔比高于基体和化学计量的HAp。因此,可以将亚稳相鉴定为富含钙的亚稳相。富含钙的亚稳相的存在被证实与热分解过程有关。

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