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Effect Of Dehydration On Structure And Induction Capability For Apatiteformation Of Microarc Oxidized Tio_2-based film With Chemical Modification

机译:脱水对化学修饰的微弧氧化Tio_2基薄膜磷灰石结构和诱导能力的影响

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摘要

A microarc oxidized (MAO) TiO_2-based film containing Ca and P was prepared on titanium alloy. The structure and apatite-forming ability of the MAO film before and after chemical treatment (NaOH aqueous solution) and subsequent dehydration at 400 and 600 ℃ were investigated. Before and after dehydration, the surface of the chemically etched MAO film show the presence of anatase and amorphous phase with a honeycombed morphology composed of numerous nano-flakes (50-100 nm in thickness) and pores (100-200 nm in size). The apatite-forming ability of the MAO film was improved greatly after chemical etching; however, that of the etched MAO film decreases after dehydration. The reason for this is that dehydrated Ca-Ti-O compounds on the surfaces of the etched and heat-treated MAO films are unfavorable for Ca ions release compared with the hydrous Ca-Ti-O compound on the surface of the etched MAO film. The decreased ability of Ca~(2+) ions release further lowers the formation ability of Ti-OH groups produced via ionic exchange between Ca~(2+) ions of the etched and heat-treated MAO films and H_3O~+ ions in simulated body fluid.
机译:在钛合金上制备了含Ca和P的微弧氧化(MAO)TiO_2基薄膜。研究了在400和600℃下化学处理(NaOH水溶液)前后的MAO膜的结构和形成磷灰石的能力。脱水前后,经过化学蚀刻的MAO膜的表面显示出锐钛矿和无定形相的存在,其蜂窝状形态由许多纳米薄片(厚度为50-100 nm)和孔(大小为100-200 nm)组成。化学刻蚀后,MAO膜的磷灰石形成能力大大提高。但是,脱水后,蚀刻后的MAO膜的膜厚降低。其原因在于,与在蚀刻的MAO膜的表面上的含水Ca-Ti-O化合物相比,在蚀刻和热处理的MAO膜的表面上的脱水的Ca-Ti-O化合物不利于Ca离子的释放。 Ca〜(2+)离子释放能力的降低进一步降低了经过蚀刻和热处理的MAO膜的Ca〜(2+)离子与H_3O〜+离子之间的离子交换产生的Ti-OH基的形成能力体液。

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