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首页> 外文期刊>Lasers in engineering >The Generation Of Hydroxyl Groups On A Magnesia Partially Stabilised Zirconia (MgO-PSZ) Bioceramic Using CO{sub}2 Laser Treatment
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The Generation Of Hydroxyl Groups On A Magnesia Partially Stabilised Zirconia (MgO-PSZ) Bioceramic Using CO{sub}2 Laser Treatment

机译:使用CO {sub} 2激光处理在镁部分稳定的氧化锆(MgO-PSZ)生物陶瓷上生成羟基的现象

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For the purpose of exploring a new technique to induce OH groups on bioinert and thereby enhance their bioactivity, an industrial CO{sub}2 laser was used to modify the surface a magnesia partially stabilised zirconia (MgO-PSZ) bioceramic. The changes in the surface properties following CO{sub}2 laser irradiation were investigated. A Fourier transform infrared spectrometer (FTIR) indicated that the CO{sub}2 laser processing generated OH groups on the MgO-PSZ. The surface melting on the MgO-PSZ induced by CO{sub}2 laser processing provides the Zr{sup}(4+) ion and OH{sup}- ion and in turn, the incorporation of the Zr{sup}(4+) ion and the OH{sup}- ion creates the Zr-OH group on the surface. Initially the amount of the hydroxyl groups increased with the CO{sub}2 laser power density, however, there were no hydroxyl groups on the sample treated at the highest power density in the experiments. This was due to the fact that the explosive evaporation resulting from the super-high temperature on the MgO-PSZ surface treated at this power density caused water vaporization and the disappearance of the OH{sup}- band.
机译:为了探索在生物惰性上诱导OH基团从而增强其生物活性的新技术,工业用CO {sub} 2激光被用于修饰氧化镁部分稳定的氧化锆(MgO-PSZ)生物陶瓷的表面。研究了CO {sub} 2激光辐照后表面性能的变化。傅立叶变换红外光谱仪(FTIR)表明,CO {sub} 2激光加工在MgO-PSZ上生成了OH基。由CO {sub} 2激光处理在MgO-PSZ上引起的表面熔化提供Zr {sup}(4+)离子和OH {sup}-离子,进而引入Zr {sup}(4+离子和OH {sup}-离子在表面上形成Zr-OH基团。最初,羟基的数量随CO {sub} 2激光功率密度的增加而增加,但是,在实验中以最高功率密度处理的样品上没有羟基。这是由于以下事实:在此功率密度下处理过的MgO-PSZ表面上的超高温引起的爆炸性蒸发导致水汽化和OH {sup}-带消失。

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