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Information Journal Paper

Title

Microstructural, Electrochemical and Biocompatibility Investigation of TiO2 Coating on AZ91D by Magnetron Sputtering Method

Pages

  2248-2257

Abstract

 In this study, due to the poor Corrosion resistance of Mg alloys, TiO2 ceramic coating applied by Magnetron Sputtering technique to enhance the Corrosion resistance and Biocompatibility of AZ91D. Microstructural studies by field emission scanning electron microscopy (FESEM) and X-Ray diffraction (XRD) showed that coating formed uniformly with semi spherical morphology containing TiO2, Mg2TiO4 and MgTi2O5 spinels, so that above of the substrate was Ti diffiusion affected. Polarization Corrosion test in simulated body fluid (SBF) solution showed that applying the coating increased Corrosion resistance by reducing Corrosion current so that MTT results show that density and number of cells on coated sample is higher than substrate without coating due to cell joint stronger. The viability of MG67 cells on the samples increased from 77% in the substrate to 89% in the coated sample.

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  • Cite

    APA: Copy

    SAMIEE, M., & Seyedraoufi, z.s.. (2020). Microstructural, Electrochemical and Biocompatibility Investigation of TiO2 Coating on AZ91D by Magnetron Sputtering Method. ADVANCED MATERIALS AND NOVEL COATINGS, 8(31 ), 2248-2257. SID. https://sid.ir/paper/270228/en

    Vancouver: Copy

    SAMIEE M., Seyedraoufi z.s.. Microstructural, Electrochemical and Biocompatibility Investigation of TiO2 Coating on AZ91D by Magnetron Sputtering Method. ADVANCED MATERIALS AND NOVEL COATINGS[Internet]. 2020;8(31 ):2248-2257. Available from: https://sid.ir/paper/270228/en

    IEEE: Copy

    M. SAMIEE, and z.s. Seyedraoufi, “Microstructural, Electrochemical and Biocompatibility Investigation of TiO2 Coating on AZ91D by Magnetron Sputtering Method,” ADVANCED MATERIALS AND NOVEL COATINGS, vol. 8, no. 31 , pp. 2248–2257, 2020, [Online]. Available: https://sid.ir/paper/270228/en

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