Characterization and corrosion studies of fluoride conversion coating on degradable Mg implants.pdf
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Characterization and corrosion studies of fluoride conversion coating on degradable Mg implants
Available online at
y 202 (2007) 590–598
/locate/surfcoatSurface Coatings TechnologCharacterization and corrosion studies of fluoride conversion coating on
degradable Mg implants
K.Y. Chiu a, M.H. Wong a, F.T. Cheng a,?, H.C. Man b
a Department of Applied Physics, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China
b Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China
Received 3 February 2007; accepted in revised form 18 June 2007
Available online 29 June 2007Abstract
Fluoride conversion coating was synthesized on magnesium (Mg) by immersion treatment in hydrofluoric acid (HF) at room temperature, with the
aim of improving the corrosion resistance of Mg in applications as degradable implant material. After an immersion period of 24 h in 48% HF, the
samples carried a bronze color, and the conversion coating was dense and free of cracks. Field-emission scanning-electron microscopy (FE-SEM) of
the cross-section revealed a coating thickness of about 1.5 μm. Atomic-force microscopy (AFM) recorded an average surface roughness of ~21 nm
for the coated sample, similar to that of the untreated one (~17 nm). The coating was mainly composed of magnesium fluoride (MgF2) as identified
by thin-film X-ray diffractometry (TF-XRD), consistent with compositional analysis using X-ray photoelectron spectroscopy (XPS). The MgF2 was
in the form of crystallites of a few nm. A small amount of oxygen was present inside the coating, suggesting that some F? ions are replaced by
hydroxyl (OH?) ions in the MgF2 structure, or that a small amount of Mg(OH)2 was present. The corrosion resistance of untreated and conversion
coated Mg in Hanks solution was studied using electrochemical impedance spectroscopy (EIS), potentiodynamic polarization tests, and immersion
tests. EIS results showed a polarization resistance of 0.18 kΩ cm2 for the untreated Mg and 5.2 kΩ cm2 for the coated sample, giving an improve
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