腐蚀
材料科学
生物相容性
涂层
复合数
合金
复合材料
扫描电子显微镜
冶金
电化学
作者
Zijun Chen,Zhenlin Liao,Zhaochen Yu,Hanqing Mei,Honggun Song,Xiaobo Zhang,Zhi Hu
标识
DOI:10.1016/j.mtchem.2026.103367
摘要
A novel composite coating with excellent corrosion resistance and biocompatibility on Mg–3Al–2Sn alloy was prepared by combining the advantages of polydopamine (PDA) and hydroxyapatite (HAP), and was investigated by scanning electron microscopy, electrochemical test, and in vitro cellular tests. The results showed that the PDA/HAP composite coating with a thickness of 19.7 μm covers the underlying PDA cracks and Mg matrix and effectively reduces the corrosion current density of the alloy from 266 to 1.53 μA cm −2 . The PDA/HAP coating exhibits excellent corrosion resistance with a 99.42 % corrosion inhibition efficiency, superior to the majority of developed HAP composite coatings to date. Meanwhile, it maintains stable pH and the lowest hydrogen evolution (4.7 ± 0.05 mL/cm 2 ) after 7 days of immersion in SBF, and retains a dense intact structure without damage. Additionally, the PDA/HAP coating exhibits excellent biocompatibility, as MC3T3-E1 cells cultured in its extract show numbers and morphologies close to those of the control group, maintain stable viability over 5 days, and indicate no significant cytotoxicity. Finally, the bonding and corrosion protection mechanisms of the PDA/HAP composite coating were discussed. • Corrosion resistant and biocompatible PDA/HAP composite coating prepared on Mg alloy. • The corrosion inhibition efficiency of the PDA/HAP coating on Mg alloy is 99.42 %. • PDA/HAP coating shows good long-term corrosion resistance during immersion in SBF. • Cell viability test results for PDA/HAP-modified alloys remain above 90 %. • The bonding and corrosion mechanisms of PDA/HAP composite coating are discussed.
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