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首页> 外文期刊>Materials science & engineering >Structural and bio-mineralization features of alumina zirconia composite influenced by the combined Ca~(2+) and PO_4~(3-) additions
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Structural and bio-mineralization features of alumina zirconia composite influenced by the combined Ca~(2+) and PO_4~(3-) additions

机译:Ca〜(2+)和PO_4〜(3-)的添加对氧化铝-氧化锆复合材料结构和生物矿化特性的影响

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摘要

The structural and bioactivity features of alumina zirconia composite (AZC) due to Ca2+ and PO43- additions are demonstrated. An in situ synthetic approach, starting from the solution precursors is devised for the powder synthesis in which the assorted range of Ca2+ and PO43- additions were done to the equimolar concentrations of Al3+ and Zr4+ precursors. The results witnessed the unique crystallization of tetragonal zirconia (t-ZrO2) at 1100 degrees C while Ca2+, PO43- and Al2O3 remained in their amorphous state in the system. On further heat treatment, alpha-Al2O3 crystallized at 1200 degrees C, which enforced t- - m-ZrO2 transformation while Ca2+ and PO43- still retained their amorphous state. The immersion tests in simulated body fluid (SBF) solution validated the enhanced bio-mineralization activity of AZC due to Ca2+ and PO43- additions. The results from the indentation tests demonstrated good uniformity in the elastic modulus and hardness data of the investigated specimens. Further, in vitro cell culture tests ascertained the bioactivity of all the AZC compositions.
机译:证明了由于添加Ca2 +和PO43-而导致的氧化铝氧化锆复合材料(AZC)的结构和生物活性特征。从溶液前体开始,原位合成方法被设计用于粉末合成,其中将Ca 2+和PO 43-的添加范围分类为等摩尔浓度的Al 3+和Zr 4+前体。结果见证了在1100摄氏度下四方氧化锆(t-ZrO2)的独特结晶,而Ca2 +,PO43-和Al2O3在系统中保持其非晶态。在进一步的热处理中,α-Al2O3在1200℃结晶,这促使t-> m-ZrO2转变,而Ca2 +和PO43-仍保持其非晶态。在模拟体液(SBF)溶液中的浸入测试验证了由于添加Ca2 +和PO43-而使AZC的生物矿化活性增强了。压痕测试的结果表明,所研究样品的弹性模量和硬度数据具有良好的一致性。此外,体外细胞培养测试确定了所有AZC组合物的生物活性。

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