4.7 Article

Surface characteristics and in-vitro studies of TiO2 coatings by plasma electrolytic oxidation in potassium-phosphate electrolyte

期刊

CERAMICS INTERNATIONAL
卷 48, 期 5, 页码 7071-7081

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2021.11.266

关键词

Plasma electrolytic oxidation; Titanium; Surface roughness; Wettability

资金

  1. Osteo Science Foundation

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Plasma electrolytic oxidation (PEO) was used to produce titanium oxide (TiO2) coatings, and the morphology, wettability, phase and chemical compositions were analyzed as a function of processing parameters. The bioactivity of the coating was evaluated through in-vitro experiments. The results showed that PEO treatment can generate porous and superhydrophilic TiO2 coatings, promoting cell adhesion and growth.
Plasma electrolytic oxidation (PEO) was used to produce titanium oxide (TiO2) coatings on Ti surface in potassium - phosphate electrolyte. The morphology, wettability, phase, and chemical compositions were studied as a function of processing parameters. The bioactivity of the coating was assessed by the ability to form biomimetic apatite in-vitro using cell culture medium. In-vitro studies using human mesenchymal stem cells were also conducted to evaluate cells' proliferation and viability of the treated Ti. The results revealed that the produced TiO2 coatings comprised pore features with the pore size increasing with applied current density and treatment duration due to high energy discharge channels at higher potential. The PEO treated Ti exhibited superhydrophilic characteristics with a contact angle <1 degrees. The findings indicated that the large actual surface area produced by the PEO treatment and the presence of negatively charge PO43- are the key factors for the superhydrophilic behavior. The in-vitro studies revealed that the PEO treated groups had higher amount of biomimetic apatite formation compared to the as-polished Ti. The PEO treatment significantly enhanced the cells' adhesion and growth after 24 and 72 h compared to the untreated Ti. A significant difference in the bioactivity was not observed between anatase and rutile.

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