SURFACE MODIFICATION OF TITANIUM FILMS WITH SODIUM ION IMPLANTATION:SURFACE PROPERTIES AND PROTEIN A

来源 :Acta Metallurgica Sinica(English Letters) | 被引量 : 0次 | 上传用户:djy0702
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Sodium implanted titanium films with different ion doses were characterized to correlate their ion implantation parameters. Native titanium films and ion implanted titanium films were characterized with combined techniques of X-ray photoelectron spectroscopy(XPS),atomic force microscopy(AFM),and light microscopy(LM). The surface presented increased sodium concentration on treated titanium films with ion dose increasing,except for the group with the highest ion dose of 4 × 1017ions/cm 2. XPS depth profiling displayed that sodium entered titanium film around 25-50nm depth depending on its implantation ion dose. AFM characterization showed that sodium ion implantation treatment changed the surface morphology from a relatively smooth titanium film to rough surfaces corresponding to different implantation doses. After sodium implantation,implanted titanium films presented big particles with island structure morphology. The surface morphology and particle growth displayed the corresponding trend. Fibrinogen adsorption on these titanium films was performed to correlate with the surface properties of treated titanium films. The results show that protein adsorption on ion-implanted samples with dose of 2 × 1017 and 4 × 1017 are statistically higher(p < 0.01) than samples treated with dose of 5 × 1016 and 1 × 1017,as well as the control samples. Sodium titanium implanted titanium with different ion doses were characterized to correlate their ion implantation parameters. (LM). The surface presents increased sodium concentration on treated titanium films with ion dose increasing, except for the group with the highest ion dose of 4 × 10 17ions / cm 2. XPS depth profiling displayed that sodium entered titanium film around 25-50 nm depth depending on its implantation ion dose. AFM characterization showed that sodium ion implantation treatment changed the surface morphology from the relatively smooth titanium film to rough surfaces corresponding to different implantation doses. surface morphology and particle growth displayed the corresponding Fibrinogen adsorption on these titanium films was performed to correlate with the surface properties of treated titanium films. The results show that protein adsorption on ion-implanted samples with dose of 2 × 10 17 and 4 × 10 17 are characterized higher (p <0.01) than samples treated with dose of 5 × 1016 and 1 × 1017, as well as the control samples.
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