首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Formation mechanism and cytocompatibility of nano-shaped calcium silicate hydrate/calcium titanium silicate/TiO2 composite coatings on titanium
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Formation mechanism and cytocompatibility of nano-shaped calcium silicate hydrate/calcium titanium silicate/TiO2 composite coatings on titanium

机译:钛上纳米水合硅酸钙/硅酸钙钙/ TiO2复合涂层的形成机理和细胞相容性

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摘要

Bilayered (HT0.5h and HT1h) and triple-layered (HT2h, HT6h and HT24h) coatings were fabricated on Ti using a hybrid process of microarc oxidation (MAO) and hydrothermal treatment (HT). The bilayered coatings comprise an outer layer of nanofloc Ca(Si1.9Ti0.1)O-5 and an inner layer of microporous TiO2. The triple-layered coatings comprise an outer layer of nanoleaf or nanoribbon Ca3Si6O15(H2O)(7), a middle layer of nanograined Ca(Si1.9Ti0.1)O-5 and an inner layer of microporous TiO2. The hydrothermal formation mechanism of the coatings was explored. The adhesion strength, hydrophilicity and cytocompatibility of selected coatings were investigated. During HT, Ca2+ incorporated into the TiO2 layer migrates out and reacts with SiO32- as well as HTiO3-, resulting in the formation of Ca(Si1.9Ti0.1)O-5 Ca3Si6O15(H2O)(7) nanoleaves nucleate from Ca(Si1.9Ti0.1)O-5 preformed on the TiO2 and grow in length and width to nanoribbons at the expense of Ca2+ and SiO32- ions. The nanofloc (HT0.5h and HT1h), nanoleaf (HT2h) and nanoribbon (HT6h) coated surfaces display firm adhesion to substrates and super hydrophilicity. Compared with as-MAOed TiO2, HTed coatings including HT0.5h, HT1h and HT2h enhance the mitochondrial activity, adhesion and proliferation of osteoblasts, and HT2h appears far more effective in accelerating the differentiation of osteoblasts.
机译:使用微弧氧化(MAO)和水热处理(HT)的混合工艺在Ti上制备了双层(HT0.5h和HT1h)和三层(HT2h,HT6h和HT24h)涂层。双层涂层包含纳米絮状Ca(Si1.9Ti0.1)O-5的外层和微孔TiO2的内层。该三层涂层包括纳米叶或纳米带Ca3Si6O15(H2O)(7)的外层,纳米晶Ca(Si1.9Ti0.1)O-5的中层和微孔TiO2的内层。探索了涂层的水热形成机理。研究了所选涂层的粘合强度,亲水性和细胞相容性。在HT过程中,掺入TiO2层中的Ca2 +迁移出并与SiO32-和HTiO3-反应,导致形成Ca(Si1.9Ti0.1)O-5 Ca3Si6O15(H2O)(7)纳米晶,其成核自Ca( Si1.9Ti0.1)O-5在TiO2上预形成,并在长度和宽度上增长为纳米带,但以Ca2 +和SiO32-离子为代价。纳米絮凝剂(HT0.5h和HT1h),纳米叶(HT2h)和纳米带(HT6h)涂层表面显示出对基材的牢固粘合性和超亲水性。与原样TiO2相比,包括HT0.5h,HT1h和HT2h在内的HTed涂层增强了线粒体活性,成骨细胞的粘附和增殖,而HT2h似乎在加速成骨细胞分化方面更为有效。

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