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Hydroxyapatite formation on oxide films containing Ca and P by hydrothermal treatment

机译:水热处理在含Ca和P的氧化膜上形成羟基磷灰石

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Oxide films were formed on titanium by means of microarc oxidation (MAO) using a direct current power supply. The oxide films containing Ca and P were obtained in an electrolyte containing beta-glycerophosphate sodium salt pentahydrate (beta-GP) and calcium acetate (CA). The surfaces of the oxide films were rough and porous, and the concentration of Ca and P were 7.3 mol percent and 6.4 mol percent, respectively, when MAO was performed in an electrolyte containing 0.04 M beta-GP and 0.10 M CA at 200 A/m~2 current density and 430 V final voltage. The oxide film consists of anatase, rutile and an amorphous phase. After hydrothermal treatment at 190 deg C, the hydroxyapatite crystals were precipitated on the oxide film surfaces. The amount of hydroxyapatite crystals increased by increasing the hydrothermal treatment time and the Ca/P ratio in the oxide film.
机译:使用直流电源通过微弧氧化(MAO)在钛上形成氧化膜。在含有β-甘油磷酸钠五水合物(β-GP)和乙酸钙(CA)的电解质中获得了包含Ca和P的氧化物膜。在含有0.04 Mβ-GP和0.10 M CA的电解质中以200 A / C的比例进行MAO氧化膜表面粗糙且多孔,Ca和P的浓度分别为7.3 mol%和6.4 mol%。 m〜2的电流密度和430 V的最终电压。氧化膜由锐钛矿,金红石和非晶相组成。在190℃下进行水热处理之后,羟基磷灰石晶体沉淀在氧化物膜表面上。通过增加水热处理时间和增加氧化膜中的Ca / P比,增加了羟基磷灰石晶体的数量。

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