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Determination of corrosion potential of coated hollow spheres
Authors:Andrea Fedorková  Andrej Oriňák  Miriam Kupková
Affiliation:a Department of Analytical Chemistry, Faculty of Science, Comenius University, Mlynská dolina, SK-84215 Bratislava 4, Slovak Republic
b Institute of Chemistry, Faculty of Science, P.J. Šafárik University, Moyzesova 11, SK-04154 Košice, Slovak Republic
c Institute of Material Research, Slovak Academy of Science, Watsonova 47, SK-04353 Košice, Slovak Republic
Abstract:Copper hollow spheres were created on porous iron particles by electro-less deposition. The consequent Ni plating was applied to improve the mechanical properties of copper hollow micro-particles. Corrosion properties of coated hollow spheres were investigated using potentiodynamic polarisation method in 1 mol dm−3 NaCl solution. Surface morphology and composition were studied by scanning electron microscopy (SEM), light microscopy (LM) and energy-dispersive X-ray spectroscopy (EDX). Original iron particles, uncoated copper spheres and iron particles coated with nickel were studied as the reference materials. The effect of particle composition, particularly Ni content on the corrosion potential value was investigated. The results indicated that an increase in the amount of Ni coating layer deteriorated corrosion resistivity of coated copper spheres. Amount of Ni coating layer depended on conditions of Ni electrolysis, mainly on electrolysis time and current intensity. Corrosion behaviour of sintered particles was also explored by potentiodynamic polarisation experiments for the sake of comparison. Formation of iron rich micro-volumes on the particle surface during sintering caused the corrosion potential shift towards more negative values. A detailed study of the morphological changes between non-sintered and sintered micro-particles provided explanation of differences in corrosion potential (Ecorr).
Keywords:A  Hollow micro-particles  B  Anodic polarisation  B  Nickel electrodeposition  B  Copper electro-less deposition  C  Corrosion
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