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Improvement in crystallinity of apatite coating on titanium with the insertion of CaF_2 buffer layer

机译:插入CaF_2缓冲层可改善钛上磷灰石涂层的结晶度

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In the apatite coatings on Ti the heat treatment process is necessary to crystallize the apatite structure for improved chemical stability and biological properties. However, the heat treatment normally degrades the mechanical strength of the coating layer associated with thermally induced stress. In this study, we aimed to improve the crystallization of apatite coating by using calcium fluoride (CaF_2) as a buffer layer. The insertion of a thin layer of CaF_2 (0.2-1 μm) between apatite and Ti significantly improved the crystallization behavior of apatite. Moreover, this crystallization was more enhanced as the thickness of CaF_2 was increased. When a 1 μm-thick CaF_2 was inserted, the crystallization of apatite initiated at a temperature as low as 320℃, being a dramatic improvement in the crystallization when considering the crystallization initiation temperature of a bare apatite coating on Ti was ~450℃. As a result of this crystallization enhancement, the dissolution behavior of CaF_2-inserted apatite coatings was more stable than that of the bare apatite coating, showing much reduced initial-burst effect. Preliminary cellular assay showed the CaF_2-inserted apatite coating provided a substrate for cells to spread and grow favorably, as being similar to the bare apatite coating. This novel way of apatite coating on Ti using CaF_2 buffer layer may be useful in the coating systems particularly requiring low temperature processing and increased crystallinity with high chemical stability.
机译:在Ti上的磷灰石涂层中,必须进行热处理工艺才能使磷灰石结构结晶,以提高化学稳定性和生物学性能。然而,热处理通常会降低与热诱导应力相关的涂层的机械强度。在这项研究中,我们旨在通过使用氟化钙(CaF_2)作为缓冲层来改善磷灰石涂层的结晶。在磷灰石和Ti之间插入CaF_2(0.2-1μm)薄层可以显着改善磷灰石的结晶行为。而且,随着CaF_2厚度的增加,该结晶作用进一步增强。当插入厚度为1μm的CaF_2时,磷灰石的结晶在低至320℃的温度下开始,考虑到Ti上裸露的磷灰石涂层的结晶开始温度为〜450℃,这是结晶过程的显着改善。这种结晶增强的结果是,插入CaF_2的磷灰石涂层的溶解行为比裸露的磷灰石涂层的溶解行为更稳定,显示出初期爆炸效应大大降低。初步的细胞分析表明,与裸露的磷灰石涂层相似,CaF_2插入的磷灰石涂层为细胞提供了良好的扩散和生长基质。使用CaF_2缓冲层在Ti上进行磷灰石涂层的这种新颖方式可能适用于特别需要低温处理和提高结晶度以及高化学稳定性的涂层系统。

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