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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >The formation of a hydroxyl bond and the effects thereof on bone-like apatite formation on a magnesia partially stabilized zirconia (MgO-PSZ) bioceramic following CO_2 laser irradiation
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The formation of a hydroxyl bond and the effects thereof on bone-like apatite formation on a magnesia partially stabilized zirconia (MgO-PSZ) bioceramic following CO_2 laser irradiation

机译:CO_2激光辐照氧化镁部分稳定氧化锆(MgO-PSZ)生物陶瓷上羟基键的形成及其对骨状磷灰石形成的影响

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摘要

Forthe purpose of improving the bioactivity of a magnesia partially stabilized zirconia (MgO-PSZ) and to explore a new technique for inducing OH group and apatite formation, a CO_2 laser has been used to modified the surface properties. The bioactivity of the CO_2 laser modified MgO-PSZ has been investigated in stimulated human fluids (SBF) with ion concentrations almost equal to those in human blood plasma. Some hydroxyl groups were found on the MgO-PSZ following CO_2 laser treatment with selected power densities. The surface melting on the MgO-PSZ induced by CO_2 laser processing provides the Zr~(4+) ion and OH~- ion, in turn, the incorporation of the Zr~(4+) ion and the OH~- ion creates the Zr-OH group on the surface. After 14 days of SBF soaking, the apatites formed on the MgO-PSZ with relatively high amount of hydroxyl groups generated by the CO_2 laser treatment, while no apatite was observed on the untreated with few hydroxyl groups. It exhibits that the Zr-OH groups on the MgO-PSZ surface is the functional groups to facilitate the apatite formation. The increased surface roughness provides more active sites, meantime, increased surface energy benefits to the adsorption and reaction on the surface.
机译:为了提高氧化镁部分稳定的氧化锆(MgO-PSZ)的生物活性并探索诱导OH基团和磷灰石形成的新技术,已使用CO_2激光修改了表面性质。已经研究了CO_2激光改性MgO-PSZ在受刺激的人体液体(SBF)中的生物活性,其离子浓度几乎等于人体血浆中的离子浓度。在以选定的功率密度进行CO_2激光处理后,MgO-PSZ上发现了一些羟基。通过CO_2激光处理在MgO-PSZ上产生的表面熔融提供Zr〜(4+)离子和OH〜-离子,然后Zr〜(4+)离子和OH〜-离子的结合产生表面有Zr-OH基团。 SBF浸泡14天后,在MgO-PSZ上形成的磷灰石具有大量CO_2激光处理产生的羟基,而未处理的磷灰石上几乎没有羟基磷灰石。结果表明,MgO-PSZ表面的Zr-OH基团是促进磷灰石形成的官能团。增加的表面粗糙度提供了更多的活性部位,与此同时,增加的表面能有益于表面上的吸附和反应。

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