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Electrical polarization depresses low temperature degradation and promotes bioactivity of chemically treated yttria-stabilized zirconia

机译:电极化压低低温降解并促进化学处理过的氧化钇稳定的氧化锆的生物活性

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Because of its excellent mechanical properties, yttria-stabilized zirconia is currently used as an orthopedic and dental material. In this study, we have improved the bioactivity of yttria-stabilized zirconia by a combination of electrical polarization and chemical treatment. The phase transformation from tetragonal to monoclinic ZrO_2 after alkaline treatment was inhibited on positively-charged yttria-stabilized zirconia surfaces compared with negatively charged and conventional surfaces. During polarization, some oxide ions move from the positively-charged surface to the negatively charged surface, leading to an increase in oxygen vacancies on the positive surface and hence greater formation of Zr-OH when this surface was exposed to alkaline solution. This then reduced the water adsorption at this surface and consequently reduced the rate of cleavage of Zr-O-Zr bonds. The bioactivity was assessed by immersing the samples in simulated body fluid and evaluating the growth of apatite on the surfaces. The combination of polarization and alkaline treatment increased the bioactivity in vitro.
机译:由于其优异的机械性能,亚钇稳定的氧化锆目前用作整形外科和牙科材料。在这项研究中,我们通过电极化和化学处理的组合改善了氧化钇稳定的氧化锆的生物活性。与带负电和常规表面相比,在带量带电的氧化钇稳定的氧化锆表面上抑制了碱性处理后四边形到单斜替氏氧化物的相变。在偏振期间,一些氧化物离子从带正电荷的表面移动到带负电的表面,导致正面上的氧空位增加,因此当该表面暴露于碱性溶液时,Zr-OH的更大形成。然后,这降低了该表面的水吸附,因此降低了Zr-O-Zr键的切割速率。通过将样品浸入模拟体液中并评估表面上的磷灰石生长来评估生物活性。偏振和碱性治疗的组合增加了体外生物活性。

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