Non-Destructive and Non-Invasive Approaches for the Identification of Hydroxy Lead–Calcium Phosphate Solid Solutions ((PbxCa1−x)5(PO4)3OH) in Cultural Heritage Materials

Author:

Costantino Claudio12,Monico Letizia123ORCID,Rosi Francesca2ORCID,Vivani Riccardo4,Romani Aldo12,Colocho Hurtarte Luis Carlos5ORCID,Villalobos-Portillo Eduardo5,Sahle Christoph J.5,Huthwelker Thomas6,Dejoie Catherine5,Burghammer Manfred5,Cotte Marine57

Affiliation:

1. Centre of Excellence SMAArt and Department of Chemistry, Biology and Biotechnology, University of Perugia, Perugia, Italy

2. CNR-SCITEC, c/o Department of Chemistry, Biology and Biotechnology, University of Perugia, Perugia, Italy

3. AXIS Research Group, NANOlab Centre of Excellence, Department of Physics, University of Antwerp, Antwerp, Belgium

4. Pharmaceutical Science Department, University of Perugia, Perugia, Italy

5. European Synchrotron Radiation Facility, Grenoble, France

6. Swiss Light Source, Paul Scherrer Institut, Villigen PSI, Switzerland

7. Sorbonne Université, CNRS, Laboratoire d'archéologie moléculaire et structurale, LAMS, UMR 8220, Paris, France

Abstract

Lead–calcium phosphates are unusual compounds sometimes found in different kinds of cultural heritage objects. Structural and physicochemical properties of this family of materials, which fall into the hydroxypyromorphite–hydroxyapatite solid solution, or (Pb xCa1− x)5(PO4)3OH, have received considerable attention during the last few decades for promising applications in different fields of environmental and material sciences, but their diagnostic implications in the cultural heritage context have been poorly explored. This paper aims to provide a clearer understanding of the relationship between compositional and structural properties of the peculiar series of (Pb xCa1− x)5(PO4)3OH solid solutions and to determine key markers for their proper non-destructive and non-invasive identification in cultural heritage samples and objects. For this purpose, a systematic study of powders and paint mock-ups made up of commercial and in-house synthesized (Pb xCa1− x)5(PO4)3OH compounds with a different Pb2+/Ca2+ ratio was carried out via a multi-technique approach based on scanning electron microscopy, synchrotron radiation-based X-ray techniques, i.e., X-ray powder diffraction and X-ray absorption near edge structure spectroscopy at the Ca K- and P K-edges, and vibrational spectroscopy methods, i.e., micro-Raman and Fourier transform infrared spectroscopy. The spectral modifications observed in the hydroxypyromorphite–hydroxyapatite solid solution series are discussed, by assessing the advantages and disadvantages of the proposed techniques and by providing reference data and optimized approaches for future non-destructive and non-invasive applications to study cultural heritage objects and samples.

Funder

Ministero dell'Università e della Ricerca

Horizon 2020 Framework Programme

H2020 Research Infrastructures

European Synchrotron Radiation Facility

Publisher

SAGE Publications

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