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Electrochemical performance of steel in cement extract and bulk matrix properties of cement paste in the presence of pluronic 123 micelles
Protective ability of nano-composite galvanic coatings with variable type and concentration of polymeric micelles
Steel corrosion resistance in model solutions, containing waste materials
Electrodeposition & characterization of Zn-Co composite coatings
Corrosion performance of composite galvanic coatings with variable concentration of polumeric nano-aggregates and/or Cr(III) coversion layers
Corrosion performance of composite galvanic coatings with variable concentration of polymeric nanoaggregates and/or Cr(III) conversion layers
Electrochemical performance of low-carbon steel in alkaline model solutions, containing hybrid aggregates
Fundamental electrochemistry in civil engineering
Sustainability of composite zinc and zincbased deposits, additionally treated in environmentally friendly conversion solution
Self-healing of galvanic Zn coatings in the presence of nano-aggregates
Pulse cathodic prevention-an efficient and cost-effective electrochemical technique for corrosion control in reinforced concrete
Application of PEO113-b-PS218 nano-aggregates for improved protective characteristics of composite zinc coatings in chloride containing environment
Electrochemical and microstructural studies in reinforced mortar, modified with core-shell micelles
Impedent spectroscopy and surface analysis of nano-composite galvanic coatings
Protective ability of Cr(III) based conversion coatings on zinc and some zinc alloys
Electrodeposition and protective action of Znbased compositionally modulated multilayer systems
The influence of Cr(III)-based conversion layers on the corrosion resistance of Zn and nano-composite Zn in chloride containing solutions
The altered microstructural properties of reinforced cement-based materials, due to the application of electrochemical techniques for corrosion control
The cement matrix and the steel/cement paste interface in reinforced mortar, containing the waste 'red'mud' as 20% cement replacement