Journal of Bionic Engineering ›› 2020, Vol. 17 ›› Issue (6): 1186-1195.doi: 10.1007/s42235-020-0097-1

• • 上一篇    下一篇

Construction of Zn-incorporated Micro/Nano Hierarchical Structure Coatings on Tantalum

Yongjie Wei, Yang Hu, Mingrui Li, Dongdong Li*   

  1. Key Laboratory of Automobile Materials of MOE, Department of Materials Science and Engineering, Jilin University, 
    Changchun 130012, China
  • 收稿日期:2020-04-28 修回日期:2020-08-07 接受日期:2020-08-12 出版日期:2020-11-10 发布日期:2020-12-16
  • 通讯作者: Dongdong Li E-mail:lidongdong@jlu.edu.cn
  • 作者简介:Yongjie Wei, Yang Hu, Mingrui Li, Dongdong Li*

Construction of Zn-incorporated Micro/Nano Hierarchical Structure Coatings on Tantalum

Yongjie Wei, Yang Hu, Mingrui Li, Dongdong Li*   

  1. Key Laboratory of Automobile Materials of MOE, Department of Materials Science and Engineering, Jilin University, 
    Changchun 130012, China
  • Received:2020-04-28 Revised:2020-08-07 Accepted:2020-08-12 Online:2020-11-10 Published:2020-12-16
  • Contact: Dongdong Li E-mail:lidongdong@jlu.edu.cn
  • About author:Yongjie Wei, Yang Hu, Mingrui Li, Dongdong Li*

摘要: Tantalum (Ta) alloys have been widely used as bone repair materials due to their excellent biocompatibility. In present work, zinc (Zn) incorporated ceramic coatings with micro/nano hierarchical structure were successfully fabricated on Ta by micro-arc oxidation and hydrothermal treatment. The content of Zn ions is about (1.35 ± 0.3) wt%. Cortex-like rough morphology (Ra: 1.504 μm) with irregular vermiform slots can be clearly observed on the surface of Ta. More importantly, the coatings resembling the structure of natural bone can release Zn, Ca, and P ions in a controlled and sustained manner. The corrosion resistance of Ta is greatly improved after functionalized with ceramic coatings, confirming by potentiodynamic polarization tests. The bonding strength between the coatings and substrates can be up to 18.9 N. Furthermore, the surface of MAOs-HT@Ta is covered by bonelike apatite after immersed in Simulated Body Fluid (SBF) for three weeks, showing excellently bioactivity. These results suggest that the innovative Zn-incorporated micro/nano hierarchical coatings on Ta may be used as promising candidates for orthopedic implants.

关键词: micro-arc oxidation, micro/nano hierarchical structure, bioactivity coatings, corrosion resistance

Abstract: Tantalum (Ta) alloys have been widely used as bone repair materials due to their excellent biocompatibility. In present work, zinc (Zn) incorporated ceramic coatings with micro/nano hierarchical structure were successfully fabricated on Ta by micro-arc oxidation and hydrothermal treatment. The content of Zn ions is about (1.35 ± 0.3) wt%. Cortex-like rough morphology (Ra: 1.504 μm) with irregular vermiform slots can be clearly observed on the surface of Ta. More importantly, the coatings resembling the structure of natural bone can release Zn, Ca, and P ions in a controlled and sustained manner. The corrosion resistance of Ta is greatly improved after functionalized with ceramic coatings, confirming by potentiodynamic polarization tests. The bonding strength between the coatings and substrates can be up to 18.9 N. Furthermore, the surface of MAOs-HT@Ta is covered by bonelike apatite after immersed in Simulated Body Fluid (SBF) for three weeks, showing excellently bioactivity. These results suggest that the innovative Zn-incorporated micro/nano hierarchical coatings on Ta may be used as promising candidates for orthopedic implants.

Key words: micro-arc oxidation, micro/nano hierarchical structure, bioactivity coatings, corrosion resistance