首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Characterization of calcium phosphate powders originating from Phyllacanthus imperialis and Trochidae Infundibulum concavus marine shells
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Characterization of calcium phosphate powders originating from Phyllacanthus imperialis and Trochidae Infundibulum concavus marine shells

机译:源于毛竹和拟南芥漏斗形贝壳的磷酸钙粉末的表征

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The study reports the preparation and characterization of powders consisting of the different phases of calcium phosphates that were obtained from the naturally derived raw materials of sea-shell origins reacted with H _3PO_4. Species of sea origin, such as corals and nacres, attracted a special interest in bone tissue engineering area. Nacre shells are built up of calcium carbonate in aragonite form crystallized in an organic matrix. In this work two natural marine origin materials (shells of echinoderm Sputnik sea urchin - Phyllacanthus imperialis and Trochidae Infundibulum concavus mollusk) were involved in the developing powders of calcium phosphate based biomaterials (as raw materials for bone-scaffolds) by hotplate and ultrasound methods. Thermal analyses of the as-prepared materials were made for an assessment of the thermal behavior and heat treatment temperatures. Samples from both sea shells each of them prepared by the above mentioned methods were subjected to thermal treatments at 450 C and 850 C in order to evaluate the crystalline transformations of the calcium phosphate structures in the heating process. By X-ray diffraction analyses various calcium phosphate phases were identified. In Sputnik sea urchins originated samples were found predominantly brushite and calcite as a small secondary phase, while in Trochidae I. concavus samples mainly monetite and HA phases were identified. Thermal treatment at 850 C resulted flat-plate whitlockite crystals - β-MgTCP [(Ca, Mg)_3 (PO_4)_2] for both samples regardless the preparation method (ultrasound or hotplate) or the targeted Ca/P molar ratio according with XRD patterns. Scanning electron microscopy and Fourier transformed infrared spectroscopy were involved more in the characterization of these materials and the good correlations of the results of these methods were made.
机译:该研究报告了由不同相的磷酸钙组成的粉末的制备和表征,这些粉末是从天然贝壳原料中与H _3PO_4反应而得的。海洋起源的物种,例如珊瑚和珍珠质,在骨组织工程领域引起了特别的兴趣。珍珠层的壳由在有机基质中结晶的文石形式的碳酸钙组成。在这项工作中,两种天然海洋起源材料(棘皮动物人造卫星海胆的壳-Phyllacanthus imperialis和Trochidae Infundibulum concavus软体动物)通过加热板和超声方法开发了磷酸钙基生物材料(作为骨支架的原料)的粉末。对所制备的材料进行热分析,以评估热行为和热处理温度。为了评估在加热过程中磷酸钙结构的结晶转变,将通过上述方法制备的两个贝壳的样品分别在450℃和850℃下进行热处理。通过X射线衍射分析,鉴定了各种磷酸钙相。在人造卫星海胆中,发现的样品主要为透钙磷石和方解石,为次要的小相,而在Trochidae I.中,凹形样品主要鉴定为透钙石和HA相。两种样品均在850°C的温度下热处理后生成平板型辉锰矿晶体-β-MgTCP[(Ca,Mg)_3(PO_4)_2],无论制备方法(超声波或热板)或根据XRD确定的目标Ca / P摩尔比模式。扫描电子显微镜和傅立叶变换红外光谱更多地涉及这些材料的表征,并且这些方法的结果具有良好的相关性。

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