4.7 Article

Effects of phosphates on microstructure and bioactivity of micro-arc oxidized calcium phosphate coatings on Mg-Zn-Zr magnesium alloy

期刊

COLLOIDS AND SURFACES B-BIOINTERFACES
卷 109, 期 -, 页码 1-9

出版社

ELSEVIER
DOI: 10.1016/j.colsurfb.2013.03.026

关键词

Calcium phosphate coating; Magnesium alloy; Micro-arc oxidation; Bioactivity; Degradability

资金

  1. Science and Technology Supporting System Item of Resource-conserving Society of Shandong Province [2007JY05]
  2. Development Project of Science and Technology of Shandong Province [2010GSF10627]

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Calcium phosphate (CaP) coatings were prepared on Mg-Zn-Zr magnesium alloy by micro-arc oxidation (MAO) in electrolyte containing calcium acetate monohydrate (CH3COO)(2)ca.H2O) and different phosphates (i.e. disodium hydrogen phosphate dodecahydrate (Na2HPO4.12H(2)O), sodium phosphate (Na3PO4.H2O) and sodium hexametaphosphate((NaPO3)(6))). Scanning electron microscope (SEM), energy-dispersive X-ray spectrometry (EDS) and X-ray diffractometer (XRD) were employed to characterize the microstructure, elemental distribution and phase composition of the CaP coatings. Simulated body fluid (SBF) immersion test was used to evaluate the coating bioactivity and degradability. Systemic toxicity test was used to evaluate the coating biocompatibility. Fluoride ion selective electrode (ISE) was used to measure F- ions concentration during 30 days SBF immersion. The CaP coatings effectively reduced the corrosion rate and the surfaces of CaP coatings were covered by a new layer formed of numerous needle-like and scale-like apatites. The formation of these calcium phosphate apatites indicates that the coatings have excellent bioactivity. The coatings formed in (NaPO3)(6)-containging electrolyte exhibit thicker thickness, higher adhesive strength, slower degradation rate, better apatite-inducing ability and biocompatibility. (C) 2013 Elsevier B.V. All rights reserved.

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