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- W2890797572 endingPage "1680" @default.
- W2890797572 startingPage "1680" @default.
- W2890797572 abstract "In this paper, the characteristics of new porous coatings fabricated at three voltages in electrolytes based on H3PO4 with calcium nitrate tetrahydrate, magnesium nitrate hexahydrate, and copper(II) nitrate trihydrate are presented. The SEM, energy dispersive spectroscopy (EDS), glow discharge optical emission spectroscopy (GDOES), X-ray photoelectron spectroscopy (XPS), and XRD techniques for coating identification were used. It was found that the higher the plasma electrolytic oxidation (PEO) (micro arc oxidation (MAO)) voltage, the thicker the porous coating with higher amounts of built-in elements coming from the electrolyte and more amorphous phase with signals from crystalline Ca(H2PO4)2∙H2O and/or Ti(HPO4)2∙H2O. Additionally, the external parts of the obtained porous coatings formed on titanium consisted mainly of Ti4+, Ca2+, Mg2+ and PO43−, HPO42−, H2PO4−, P2O74− as well as Zn2+ or copper Cu+/Cu2+. The surface should be characterized by high biocompatibility, due to the presence of structures based on calcium and phosphates, and have bactericidal properties, due to the presence of zinc and copper ions. Furthermore, the addition of magnesium ions should accelerate the healing of postoperative wounds, which could lead to faster patient recovery." @default.
- W2890797572 created "2018-09-27" @default.
- W2890797572 creator A5006444185 @default.
- W2890797572 creator A5040263250 @default.
- W2890797572 creator A5043185386 @default.
- W2890797572 creator A5049680499 @default.
- W2890797572 creator A5060790275 @default.
- W2890797572 creator A5064412974 @default.
- W2890797572 creator A5067578318 @default.
- W2890797572 creator A5074605331 @default.
- W2890797572 date "2018-09-11" @default.
- W2890797572 modified "2023-09-29" @default.
- W2890797572 title "Novel Porous Phosphorus–Calcium–Magnesium Coatings on Titanium with Copper or Zinc Obtained by DC Plasma Electrolytic Oxidation: Fabrication and Characterization" @default.
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