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Surface Characterization of Amorphous Zr-Al-(Ni, Cu) Alloys Immersed in Cell-Culture Medium

机译:浸在细胞培养液中的非晶Zr-Al-(Ni,Cu)合金的表面表征

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For the evaluation of zirconium-base amorphous alloys as biomaterials, the surface compositions of amorphous Zr-Al-Ni-Cu and Zr-Al-Cu alloys were characterized using X-ray photoelectron spectroscopy. The alloys were polished, autoclaved, and immersed in Hanks' solution or Eagle's minimum essential medium containing fetal bovine serum, MEM + FBS. Aluminum was enriched in the surface oxide film and the substrate just under the film of the alloys polished in water. After autoclaving, aluminum and copper were enriched in the substrate while zirconium was preferentially oxidized and incorporated into the surface oxide film. In Hanks' solution, copper and nickel decreased in the substrate and surface oxide film, resulting in the enrichment of aluminum in the substrate. In MEM + FBS, zirconium preferentially decreased by the effects of amino acids and proteins while copper was enriched in the substrate. The surface composition of zirconium-base amorphous alloys was much influenced by amino acids and proteins in MEM + FBS.
机译:为了评估作为生物材料的锆基非晶合金,使用X射线光电子能谱表征了非晶Zr-Al-Ni-Cu和Zr-Al-Cu合金的表面成分。将合金抛光,高压灭菌,然后浸入含胎牛血清MEM + FBS的Hanks溶液或Eagle的基本必需培养基中。在水中抛光的合金膜的正下方,表面氧化物膜和基底中的铝富集。高压灭菌后,铝和铜在基板中富集,而锆被优先氧化并结合到表面氧化膜中。在汉克斯溶液中,铜和镍在基材和表面氧化膜中减少,导致铝在基材中富集。在MEM + FBS中,锆由于氨基酸和蛋白质的作用而优先减少,而铜富集在底物中。锆基非晶态合金的表面组成受MEM + FBS中氨基酸和蛋白质的影响很大。

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