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Surface characteristics and bioactivity of oxide films formed by anodic spark oxidation on titanium in different electrolytes

机译:不同电解液中钛上阳极火花氧化形成氧化膜的表面特性和生物活性

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Porous oxide films were fabricated on commercially pure titanium (CP-Ti) using an anodic spark oxidation technique with different electrolytes, 1M H{sub}2SO{sub}4, 1M H{sub}3PO{sub}4, and 1M CH{sub}3COOH. The micro-morphology, surface roughness, and crystalline structure were evaluated by scanning electron microscopy, profilometry, and X-ray diffraction, respectively. The chemical composition and binding state of the specimen groups were evaluated by X-ray photoelectron spectroscopy (XPS). TiO{sub}2 films were observed on the specimens anodized in the acetic acid and sulfuric acid electrolytes. However, a TiP{sub}2O{sub}7 film was mainly observed on the specimen anodized in the phosphoric acid electrolyte. The dominant Ti{sup}(4+) peaks for all sample groups and the additional Ti{sup}(3+) peaks for the groups anodized in the acetic and phosphoric acid electrolytes were detected by high-resolution XPS. The effects of the surface characteristics of the specimens on the bioactivity were examined using an immersion test in a minimum essential medium (MEM) solution. There was a higher level of calcium formed on the anodized specimens than on the as-received titanium while there was no significant difference in the calcium content between the anodized specimen groups. Fourier transform infrared spectroscopy showed a different content of chemical function groups in the deposits formed in MEM according to the type of electrolyte used. These results were attributed to the different surface chemical states of the oxide films.
机译:使用阳极火花氧化技术,使用不同的电解质,1M H {sub} 2SO {sub} 4、1M H {sub} 3PO {sub} 4和1M CH { sub} 3COOH。显微形态,表面粗糙度和晶体结构分别通过扫描电子显微镜,轮廓测定法和X射线衍射评估。通过X射线光电子能谱(XPS)评估样品组的化学组成和结合状态。在乙酸和硫酸电解质中阳极氧化的样品上观察到TiO {sub} 2薄膜。然而,主要在磷酸电解质中阳极氧化的样品上观察到TiP {sub} 2O {sub} 7膜。通过高分辨率XPS检测了所有样品组的主要Ti {sup}(4+)峰,以及在乙酸和磷酸电解质中阳极氧化的基团的其他Ti {sup}(3+)峰。使用最低必需培养基(MEM)溶液中的浸没测试,检查了样品表面特性对生物活性的影响。在阳极氧化的试样上形成的钙水平比在刚收到的钛上高,而在阳极氧化的试样组之间的钙含量没有显着差异。傅立叶变换红外光谱显示,根据所用电解质的类型,在MEM中形成的沉积物中化学官能团的含量不同。这些结果归因于氧化膜的不同表面化学状态。

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