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Micro Raman spectroscopy used for the study of corrosion products on copper alloys: study of the chemical composition of artificial patinas used for restoration purposes
75
Citations
14
References
2005
Year
Materials ScienceMaterials EngineeringChemical EngineeringMicro Raman SpectroscopyEngineeringCorrosion ProtectionCorrosionArtificial PatinasChemical CompositionSurface ScienceSurface-enhanced Raman ScatteringAtmospheric CorrosionChemistryCopper Alloy ArtifactsMineral ProcessingCorrosion ResistanceMicrostructureCorrosion Inhibition
Studying the atmospheric corrosion of copper alloy artifacts is important to acquire a better knowledge about the condition of the object and its possible conservation and restoration. The nature of the formed product, e.g. sulfate, carbonate or chloride, depends on factors such as the amount of polluting elements or humidity but may also depend on the nature of the underlying aesthetic patina, applied by the artist. The composition of the patination solution and the method of patination will both influence the nature of this aesthetic patina, i.e. its chemical composition and morphology. However, although a lot of patination recipes exist, little is known about these patinas as far as composition, structure and ageing is concerned. Therefore, a combination of several surface analytical techniques is required for the complete characterization of patina layers. In this paper, Raman spectroscopy is used to study the characteristics of several patinas obtained on copper following different traditional recipes.
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