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In situ growth of hydroxyapatite on lamellar alumina scaffolds with aligned pore channels

机译:具有对齐孔道的层状氧化铝支架上羟基磷灰石的原位生长

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We prepared hydroxyapatite/alumina (HA/Al_2O_3) porous composite materials by the in situ growth of HA on lamellar Al_2O_3 ceramics. The procedure comprises two steps. First, lamellar Al_2O_3 ceramics with aligned pore channels were obtained by freeze casting Al_2O_3 slurry. Second, as-prepared monoliths were used as scaffolds and subjected to hydrothermal treatment in the HA precursor solution. We characterized the microstructure, chemical composition, and mechanical properties of synthesized HA/Al_2O_3. Experiment results show that the addition of H_2O_2 into the reaction solution plays an important role in controlling the microstructure of the cultivated HA. The formation of HA has no obvious influence on the lamellar architecture of Al_2O_3 ceramics. The prepared composite materials exhibit superior compressive strength. Combination of the high strength of lamellar Al_2O_3 with the excellent biological properties of HA increases the potential of obtained HA/Al_2O_3 for load-bearing biological applications.
机译:通过在片状Al_2O_3陶瓷上原位生长HA,制备了羟基磷灰石/氧化铝(HA / Al_2O_3)多孔复合材料。该过程包括两个步骤。首先,通过冷冻铸造Al_2O_3浆料获得具有对准孔通道的层状Al_2O_3陶瓷。第二,将制备的整体料用作支架,并在HA前体溶液中进行水热处理。我们表征了合成的HA / Al_2O_3的微观结构,化学组成和力学性能。实验结果表明,向反应溶液中加入H_2O_2在控制培养的HA的微观结构方面起着重要作用。 HA的形成对Al_2O_3陶瓷的层状结构没有明显影响。制备的复合材料显示出优异的抗压强度。片状Al_2O_3的高强度与HA的优异生物学特性相结合,增加了获得的HA / Al_2O_3在承重生物应用中的潜力。

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