节点文献
Efficient hydrophilicity improvement of titanium surface by plasma jet in micro-hollow cathode discharge geometry
【摘要】 Surface hydrophilicity improvement of titanium(Ti) is of great significance for the applications of the important biomaterial. In this study, efficient hydrophilicity on the Ti surface is improved by an air plasma jet generated by a microhollow cathode discharge(MHCD) geometry. Elementary discharge aspects of the plasma jet and surface characteristics of the Ti surface are investigated by varying dissipated power(P_d). The results show that the plasma jet can operate in a pulsed mode or a continuous mode, depending on P_d. The plume length increases with Pdand air flow rate increasing. By optical emission spectroscopy, plasma parameters as a function of Pdare investigated. After plasma treatment, water contact angel(WCA) of the Ti sample decreases to a minimum value of 15° with Pdincreasing. In addition, the surface topography,roughness, and content of chemical composition are investigated by scanning electron microscopy(SEM), atomic force microscopy(AFM), and x-ray photoelectron spectroscopy(XPS) with Pdincreasing. The results show that Ti–O bond and O–H group on the Ti surface are beneficial to the improvement of the hydrophilicity of Ti surface.
【Abstract】 Surface hydrophilicity improvement of titanium(Ti) is of great significance for the applications of the important biomaterial. In this study, efficient hydrophilicity on the Ti surface is improved by an air plasma jet generated by a microhollow cathode discharge(MHCD) geometry. Elementary discharge aspects of the plasma jet and surface characteristics of the Ti surface are investigated by varying dissipated power(P_d). The results show that the plasma jet can operate in a pulsed mode or a continuous mode, depending on P_d. The plume length increases with Pdand air flow rate increasing. By optical emission spectroscopy, plasma parameters as a function of Pdare investigated. After plasma treatment, water contact angel(WCA) of the Ti sample decreases to a minimum value of 15° with Pdincreasing. In addition, the surface topography,roughness, and content of chemical composition are investigated by scanning electron microscopy(SEM), atomic force microscopy(AFM), and x-ray photoelectron spectroscopy(XPS) with Pdincreasing. The results show that Ti–O bond and O–H group on the Ti surface are beneficial to the improvement of the hydrophilicity of Ti surface.
【Key words】 plasma jet; plasma treatment; plasma parameters; discharge aspects;
- 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年08期
- 【分类号】TG146.23;O53;O461
- 【下载频次】3