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On the role of laser-induced microstructures in influencing the surface energy of magnesia partially stabilized zirconia bioceramic

机译:激光诱导的微结构对氧化镁部分稳定的氧化锆生物陶瓷表面能的影响

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摘要

Surface energy must in some way be connected to surface chemistry and is therefore an important determinant of a biomaterial’s functions. This work elucidates the basic phenomena and wetting mechanisms associated for a widely used bioinert ceramic, magnesia partially stabilizedudzirconia (MgO-PSZ) following CO2 laser treatment. Contact angles for a set of test liquids were used to measure the wettability characteristics and to reduce the surface energy of the MgO-PSZ before and after CO2 laser treatment. CO2 laser treatment of the MgO-PSZ surface was seen toudeffect an improvement in the material’s wettability characteristics. Furthermore, it was found that the extent of wettability modi®cation was closely related to the microstructure induced by CO2 laser radiation on the surface of the MgO-PSZ.
机译:表面能必须以某种方式与表面化学联系起来,因此是生物材料功能的重要决定因素。这项工作阐明了在CO2激光处理后,广泛使用的生物惰性陶瓷氧化镁部分稳定的氧化锆(MgO-PSZ)的基本现象和润湿机理。一组测试液体的接触角用于测量可湿性,并降低CO2激光处理前后的MgO-PSZ表面能。观察到MgO-PSZ表面的CO2激光处理影响了材料的润湿性。此外,发现润湿性的改变程度与MgO-PSZ表面上的CO2激光辐射引起的微观结构密切相关。

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