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首页> 外文期刊>CERAMICS INTERNATIONAL >Titania nanotubeano-brushite composited bioactive coating with microanotopography on titanium formed by anodic oxidation and hydrothermal treatment
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Titania nanotubeano-brushite composited bioactive coating with microanotopography on titanium formed by anodic oxidation and hydrothermal treatment

机译:阳极氧化和水热处理在钛上形成微米/纳米形貌的二氧化钛纳米管/纳米-钙铝石复合生物活性涂层

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摘要

This work was to improve the bioactivity of biomedical titanium (Ti) through constructing a bioactive surface with microano-topography on Ti. Firstly, Ti plates were sandblasted, acid etched and anodized (SBAO) to obtain the controlled microano-topography. And then, heat treatment was used to change the amorphous phase of Ti oxide nanotubes to anatase on the SBAO sample. The SBAO sample and heat treated SBAO sample (SBAOT) both have super hydrophilicity mainly due to their microano-topography. At last, nano-brushite was deposited on the SBAOT surface by hydrothermal treatment to further improve its bioactivity. The simulated body fluid incubation indicated that this novel coating with nano-brushite has more excellent bioactivity as compared to Ti, and SBAO and SBAOT. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:这项工作是通过在Ti上构建具有微/纳米形貌的生物活性表面来提高生物医学钛(Ti)的生物活性。首先,对Ti板进行喷砂,酸蚀和阳极氧化(SBAO),以获得可控的微观/纳米形貌。然后,通过热处理将SBAO样品上的Ti氧化物纳米管的非晶相转变为锐钛矿。 SBAO样品和热处理的SBAO样品(SBAOT)都具有超强的亲水性,这主要是由于其微观/纳米形貌。最后,通过水热处理在SBAOT表面上沉积了纳米级钙铝石,以进一步提高其生物活性。模拟的体液温育表明,与Ti,SBAO和SBAOT相比,这种新型的具有纳米毛刺的涂层具有更好的生物活性。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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