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Characteristic of microarc oxidized coatings on titanium alloy formed in electrolytes containing chelate complex and nano-HA

机译:含螯合物和纳米HA的电解质中钛合金上微弧氧化涂层的特性

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Microarc oxidized (MAO) TiO_2-based coatings containing Ca and P on titanium alloy were formed in electrolytes containing nano-hydroxyapatite (nano-HA), calcium and phosphate salts. The effects of HA concentration on the thickness, micropore size and number of the MAO coatings were not pronounced. However, the surfaces of the MAO coatings become rough and the crystallinity of anatase increases with increasing HA concentration. In addition, the Ca and P concentrations on the surfaces of the MAO coatings decrease, since the chelate complex of CaY~(2-) (Y = [_2(OOC)NCH_2CH_2N(COO)_2]~(4-)) and phosphate ions are hindered to be incorporated into the MAO coatings by HA. In vitro experiments indicate that the apatite-forming abilities of the MAO coatings decrease with increasing HA concentration. Furthermore, with increasing HA concentration, the solubility of Ca and P of the MAO coatings decreases, which could lower the supersaturation of the SBF with respect to apatite near the surfaces of the MAO coatings, further leading to the decreased apatite-forming ability. The results indicate that the HA addition in the electrolytes has an important effect on the structure and in vitro bioactivity of the MAO coatings.
机译:在含有纳米羟基磷灰石(nano-HA),钙盐和磷酸盐的电解质中形成了钛合金上含有Ca和P的微弧氧化(MAO)TiO_2基涂层。 HA浓度对MAO涂层的厚度,微孔尺寸和数量的影响并不明显。然而,MAO涂层的表面变得粗糙,并且随着HA浓度的增加,锐钛矿的结晶度增加。此外,由于CaY〜(2-)(Y = [_2(OOC)NCH_2CH_2N(COO)_2]〜(4-))和磷酸盐的螯合物,MAO涂层表面的Ca和P浓度降低。离子阻碍HA掺入MAO涂层中。体外实验表明,随着HA浓度的增加,MAO涂层的磷灰石形成能力降低。此外,随着HA浓度的增加,MAO涂层中Ca和P的溶解度降低,这可能会降低SBF相对于MAO涂层表面附近的磷灰石的过饱和度,进而导致磷灰石形成能力降低。结果表明,在电解质中添加HA对MAO涂层的结构和体外生物活性具有重要影响。

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