innovative technique to simply fabricate ZrO₂–HA–TiO₂ nanostructured layers

For the first time, ZrO₂–HA–TiO₂ layers were synthesized through EPD-Enhanced MAO (EEMAO) technique in only one step where no supplementary treatment was required. SEM, XRD, EDX, and XPS techniques were employed to propose a correlation between the growth parameters and the physical and chemical pro...

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Veröffentlicht in:Colloids and surfaces, B, Biointerfaces B, Biointerfaces, 2011-08, Vol.86 (1), p.14-20
Hauptverfasser: Samanipour, F, Bayati, M.R, Golestani-Fard, F, Zargar, H.R, Troczynski, T, Mirhabibi, A.R
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Sprache:eng
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Zusammenfassung:For the first time, ZrO₂–HA–TiO₂ layers were synthesized through EPD-Enhanced MAO (EEMAO) technique in only one step where no supplementary treatment was required. SEM, XRD, EDX, and XPS techniques were employed to propose a correlation between the growth parameters and the physical and chemical properties of the layers. The layers revealed a porous structure where applying higher voltages and/or utilizing higher concentrated electrolytes resulted in formation of wider pores and increasing the zirconium concentration in the layers; meanwhile, prolonging the growth time had the same effects. The layers mainly consisted of anatase, hydroxyapatite, monoclinic ZrO₂, and tetragonal ZrO₂ phases. Increasing the voltage, electrolyte concentration, and time, hydroxyapatite as well as tetragonal ZrO₂ was decomposed to α-TCP, monoclinic ZrO₂, and ZrO. The nanosized zirconia particles (d=20–60nm) were further accumulated on the vicinity of the layers when thicker electrolytes were utilized or higher voltages were applied. Emphasizing on the chemical and electrochemical foundations, a probable formation mechanism was finally put forward.
ISSN:0927-7765
1873-4367
DOI:10.1016/j.colsurfb.2011.03.010