Magnesium with micro-arc oxidation coating and polymeric membrane: an in vitro study on microenvironment

被引:0
|
作者
Honglong Li
Haobo Pan
Chengyun Ning
Guoxin Tan
Jingwen Liao
Guoxin Ni
机构
[1] South China University of Technology,School of Materials Science and Engineering
[2] Chinese Academy of Science,Center for Human Tissues and Organs Degeneration, Shenzhen Institute of Advanced Technology
[3] Guangdong University of Technology,Institute of Chemical Engineering and Light Industry
[4] Southern Medical University,Department of Orthopaedics and Traumatology, Nanfang Hospital
关键词
Corrosion Resistance; Simulated Body Fluid; Coated Sample; Average Pore Size; PHBV;
D O I
暂无
中图分类号
学科分类号
摘要
Numerous modification methods have been reported to enhance the corrosion resistance of magnesium with positive results. However, little attention has been paid on their impact on micro-environment, particularly the ion concentration and local pH value. In this study, two different coatings were prepared on magnesium, one with porous micro-arc oxidation (MAO) coating alone, and the other with additional polymer polyhydroxybutyrate (PHB) membrane using spinning technique. Their in vitro corrosional and biological behaviors were investigated and compared. Both coatings were found to reduce the degradation rate of magnesium, but an additionally deposited PHB membrane was superior to MAO-coated magnesium since it could produce a micro-environment with preferable local pH value and ion concentration for osteoblast proliferation. Our study suggests that micro-environment should be another critical issue in evaluation of a modification method for orthopaedic implants.
引用
收藏
相关论文
共 50 条
  • [1] Magnesium with micro-arc oxidation coating and polymeric membrane: an in vitro study on microenvironment
    Li, Honglong
    Pan, Haobo
    Ning, Chengyun
    Tan, Guoxin
    Liao, Jingwen
    Ni, Guoxin
    [J]. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2015, 26 (03)
  • [2] SLM Magnesium Alloy Micro-Arc Oxidation Coating
    Yue, Xuejie
    Xu, Kangning
    Wang, Shuyi
    Liu, Hengyan
    Guo, Shiyue
    Zhao, Rusheng
    Xu, Gaopeng
    Wang, Hao
    Yue, Xuezheng
    [J]. Materials, 2024, 17 (20)
  • [3] A novel superhydrophobic micro-arc oxidation coating on magnesium alloy
    Zhang, Bingzi
    [J]. NATIONAL SCIENCE REVIEW, 2017, 4 (06) : 793 - 793
  • [4] Phase composition of micro-arc oxidation coating on magnesium alloys
    Li, Song
    Liu, Yao-Hui
    Zhang, Ji-Cheng
    Song, Li-Min
    [J]. Hangkong Cailiao Xuebao/Journal of Aeronautical Materials, 2008, 28 (06): : 10 - 15
  • [5] Study of Micro-arc Oxidation Process in Magnesium Surface
    Chen, Ze-min
    Lu, Pin
    Dong, Qiu-hong
    [J]. DIGITAL MANUFACTURING & AUTOMATION III, PTS 1 AND 2, 2012, 190-191 : 595 - +
  • [6] Study on micro-arc oxidation coating of magnetic metal powder composite magnesium alloy
    Su, Zhaowei
    Mu, Rui
    Cui, Yonghui
    Zhu, Hongda
    Li, Xuetian
    Shao, Zhongcai
    [J]. ANTI-CORROSION METHODS AND MATERIALS, 2020, 67 (05) : 501 - 508
  • [7] Characterization and corrosion behavior of ceramic coating on magnesium by micro-arc oxidation
    Durdu, Salih
    Aytac, Aylin
    Usta, Metin
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (34) : 8601 - 8606
  • [8] Study of Scanning Micro-arc Oxidation and Coating Development
    Xia, Lingqin
    Han, Jianmin
    Domblesky, Joseph P.
    Yang, Zhiyong
    Li, Weijing
    [J]. JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2017, 26 (11) : 5323 - 5332
  • [9] Study of Scanning Micro-arc Oxidation and Coating Development
    Lingqin Xia
    Jianmin Han
    Joseph P. Domblesky
    Zhiyong Yang
    Weijing Li
    [J]. Journal of Materials Engineering and Performance, 2017, 26 : 5323 - 5332
  • [10] Comparative study of micro-arc oxidation coating and fluorine-conversion coating on porous magnesium surface
    Chen S.-S.
    Gu G.-S.
    Guo Q.-Z.
    Zhang B.-C.
    Du K.-Q.
    Yang K.
    Li Y.-H.
    [J]. Surface Technology, 2021, 50 (02): : 13 - 21