The Application of Cathodoluminescence (CL) for the Characterization of Blue Pigments

Author:

Palamara Eleni12,Kesidis Stelios1ORCID,Cifuentes Laura Tormo3,Das Partha Pratim45ORCID,Nicolopoulos Stavros5,Zacharias Nikolaos1

Affiliation:

1. Laboratory of Archaeometry, Department of History, Archaeology and Cultural Resources Management, University of the Peloponnese, 24100 Kalamata, Greece

2. Art-e Solutions PC, 18 Sfaktirias Str., 24133 Kalamata, Greece

3. Museo Nacional de CienciasNaturales, Calle de José Gutiérrez Abascal, 2, 28006 Madrid, Spain

4. Electron Crystallography Solutions SL, Calle Orense 8, 28020 Madrid, Spain

5. NanoMEGAS SPRL, Rue Émile Claus 49 Bte 9, 1050 Brussels, Belgium

Abstract

The combined application of Cathodoluminescence (CL) with Scanning Electron Microscopy (SEM) on paintings and painted surfaces has the potential to identify both organic and inorganic pigments on a micrometre or even nanometre scale. Additionally, the combination with Energy-Dispersive Spectrometry (EDS) allows for a more holistic, elemental, and mineralogical characterization of pigments. In addressing the need for the creation of a robust, open access database of characteristic CL spectra of pigments, a large project has been undertaken, focusing primarily on common organic and inorganic pigments. The present paper focuses on the CL characterization of 10 significant blue pigments in pure powder form: cerulean blue, Egyptian blue, Han blue, indigo, lapis lazuli, Maya blue, phthalo blue, vivianite, ultramarine blue, and zirconium blue. The CL spectra present characteristic bands for most of the pigments, allowing their secure identification, especially when combining the results with the EDS analyses. The effect of binding media and of the mixture of different pigments was also studied, via the analysis of mixtures of pigments with oil painted over canvas. Overall, both the binding medium and the mixture of pigments do not appear to create significant differences in the occurring spectra, thus allowing the identification of individual pigments. EDS and RAMAN spectra are included in order to facilitate comparison with other databases.

Publisher

MDPI AG

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