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Synthesis and characterisation of large chlorapatite single-crystals with controlled morphology and surface roughness

机译:形态和表面粗糙度可控的大型氯磷灰石单晶的合成与表征

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摘要

This work describes the synthesis of chlorapatite single crystals using the molten salt method with CaCl_2 as a flux. By manipulating the processing conditions (amount of flux, firing time and temperature, and cooling rates) it is possible to manipulate the crystal morphology from microscopic fibres to large crystals (up to few millimetre long and ~ 100 μm thick). The crystal roughness can be controlled to achieve very flat surfaces by changing the melt composition "in situ" at high temperature. The Young modulus and hardness of the crystals are 110 ± 15 and 6.6 ±1.5 GPa respectively as measured by nanoindenta-tion. Crystal dissolution in Hanks solution starts around the defects. Several in vitro assays were performed; ClAp crystals with different size and shape are biocompatible. Cell apoptosis was very low at 5, 10, and 15 days (Cas-pase-3) for all the samples. Proliferation (MTT) showed to be influenced by surface roughness and size of the crystals.
机译:这项工作描述了使用CaCl_2作为助熔剂的熔融盐法合成亚氯酸盐单晶。通过控制加工条件(助熔剂的量,焙烧时间和温度以及冷却速率),可以控制从微观纤维到大晶体(长达几毫米长至约100μm厚)的晶体形态。通过在高温下“原位”改变熔体组成,可以控制晶体粗糙度以获得非常平坦的表面。通过纳米感测,晶体的杨氏模量和硬度分别为110±15和6.6±1.5GPa。晶体在Hanks溶液中的溶解围绕缺陷开始。进行了几种体外试验;具有不同大小和形状的ClAp晶体具有生物相容性。所有样品的细胞凋亡在5、10和15天(Cas-pase-3)都非常低。扩散(MTT)显示出受表面粗糙度和晶体尺寸的影响。

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  • 来源
    《Journal of materials science 》 |2012年第10期| 2471-2482| 共12页
  • 作者单位

    Instituto de Ceramica de Galicia, Universidad Santiago de Compostela, Avda Mestre Mateo S/N, 15706 Santiago de Compostela, Spain,Department of Materials, Centre for Advanced Structural Ceramics, Imperial College London, Royal School of Mines, Prince Consort Road, South Kensington, London SW7 2AZ, UK;

    Instituto de Ceramica de Galicia, Universidad Santiago de Compostela, Avda Mestre Mateo S/N, 15706 Santiago de Compostela, Spain;

    Keramat S. L., Poligono Novo Milladoiro, Ames, Spain;

    Materials Department, Centre for Advanced Structural Ceramics, Imperial College London, London SW7 2AZ, UK;

    Instituto de Ceramica de Galicia, Universidad Santiago de Compostela, Avda Mestre Mateo S/N, 15706 Santiago de Compostela, Spain;

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