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Preparation and characterization of selenium incorporated anodic conversion coatings on titanium surfaces for biomedical applications

机译:生物医学应用钛表面上掺硒的阳极转化膜的制备和表征

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An anodic spark deposition process was used for preparation of inorganic, glass-ceramic like conversion coatings. The microstructure of the layers was characterized by surface and solid state techniques such as scanning electron microscopy, electron probe microanalysis and Raman spectroscopy. The porous coatings, typically up to 8 urn thick, consist mainly of titanium oxides and amounts of incorporated electrolyte constituents like Se, Ca or P. Beside nano crystalline anatase phases, a mostly amorphous structure is proposed in which network-forming [PO_4] tetrahedras and [TiO_6] octahedras in various degrees of condensation are connected. A drastic modification of the film structure was observed when selenium was incorporated into the glassy oxide structure of the coating. In these cases no nano crystalline phases of titanium oxides or other chemical compounds were detected. First cell culture investigations show a significant improvement of the biological properties. Cell proliferation and TGF-beta-expression of these coatings in comparison with commercial pure titanium (CPT) with native titanium oxide films were examined.
机译:阳极火花沉积工艺用于制备无机玻璃陶瓷样转化涂层。通过表面和固态技术,例如扫描电子显微镜,电子探针显微分析和拉曼光谱,对层的微观结构进行表征。多孔涂层通常​​厚达8微米,主要由氧化钛和一定量的电解质成分(如Se,Ca或P)组成。除了纳米晶锐钛矿相之外,还提出了一种大多为非晶态的结构,其中网络形成[PO_4]四面体连接了各种缩合度的[TiO_6]八面体。当将硒掺入涂层的玻璃态氧化物结构中时,观察到膜结构发生了巨大的变化。在这些情况下,未检测到氧化钛或其他化合物的纳米晶相。最初的细胞培养研究表明,生物学特性有了显着改善。与具有天然氧化钛膜的商业纯钛(CPT)相比,检查了这些涂层的细胞增殖和TGF-β表达。

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