华西口腔医学杂志

• 基础研究 • 上一篇    下一篇

氨基注入钛表面及其微观分析

白薇,陈治清,张敏,刘仲阳,王培录,廖小东,郑思孝,孙官清   

  1. 610041 四川大学华西口腔医学院口腔材料教研室 (白 薇,陈治清,张 敏),(白 薇现在北京大学医学部博士后流动站),四川大学原子核科学技术研究所辐射物理及技术教育部重点实验室(刘仲阳,王培录,廖小东,郑思孝,孙官清)
  • 收稿日期:2003-02-25 修回日期:2003-02-25 出版日期:2003-02-20 发布日期:2003-02-20
  • 基金资助:

    本课题为四川大学辐射物理及技术教育部重点实验室基金资助 (编号99-5)

Microcosmic Analysis of Amino Group Implanted Titanium

BAI Wei*,CHENZhiqing,ZHANG Min,et al.   

  1. *Oral Material Teaching and Research Group,West China College ofStomatology, Sichuan University,Chengdu610041,China
  • Received:2003-02-25 Revised:2003-02-25 Online:2003-02-20 Published:2003-02-20

摘要:

目的 研究氨基基团注入纯钛表面后,材料表面的微观结构和化学组成。方法 在室温下将氨基以每平方厘米5×1017, 1×1017和5×1016离子的注入剂量注入到纯钛表面,注入能量为100 keV,离子束电流密度为10μA/cm2。对改性材料进行X射线光电子能谱分析,以研究注入后材料表面的化学成分,并通过扫描电镜观察材料注入前后表面物理结构的变化。结果 得到了XPS全谱、结合能值以及扫描电镜照片,发现注入后,样品表面由氧、钛、碳、氮元素组成, 用高斯拟合对材料表面可能存在的元素化学状态进行了分析。扫描电镜结果发现材料表面结构在注入前后未发生明显变化。结论 氨基基团注入可成功地将有机氨基基团引入到纯钛材料表面,形成以TiN为主的含钛、氨基化合物的改性层。此方法对材料本体的机械性能及粗糙度等方面影响很小。

关键词: 离子注入, X射线光电子能谱分析, 扫描电镜, 成骨细胞培养

Abstract:

Objective The purpose of this study was to determine the effects of amino group implantation on the surface struc- tures of titanium.Methods The amino groups were implanted into the surfaces of titanium using 100 keV amino group ions at ambient temperature (25℃) with the following three different doses: 5×1017, 1×1017and 5×1016ions per cm2. The current density of the ion-beam was (10μA/cm2. The modified surfaces were characterized using X-ray photoelectron spectroscopy (XPS) to determine the chemical components of the modified surfaces. A scanning electron microscope (SEM) was used to study the physical structure of the surfaces.Results The wide XPS profiles, the binding energy data and the SEMphotoswere obtained. The XPS showed that the modi- fied surface contained Ti, O, C and N. The possible chemical states were speculated using Gauss matching analysis. There was no sig- nificant difference between the surfaces with and without implanted amino groups.Conclusion The XPS data reveals that the structure of the modified surface layer of aminogroup-implanted titanium is TiN, comprising a complex structure of titanium and amino compound near the surface. The SEM Photos show that this technique has little effect on the surface structures of materials.

Key words: amino groupimplanted, titanium, X-ray photoelectron spectroscopy, scanning electron microscope