Back to Search Start Over

New Advances in Dye Analyses: In Situ Gel-Supported Liquid Extraction from Paint Layers and Textiles for SERS and HPLC-MS/MS Identification

Authors :
Adele Bosi
Greta Peruzzi
Alessandro Ciccola
Ilaria Serafini
Flaminia Vincenti
Camilla Montesano
Paolo Postorino
Manuel Sergi
Gabriele Favero
Roberta Curini
Source :
Molecules, Vol 28, Iss 14, p 5290 (2023)
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

To date, it is still not possible to obtain exhaustive information about organic materials in cultural heritage without sampling. Nonetheless, when studying unique objects with invaluable artistic or historical significance, preserving their integrity is a priority. In particular, organic dye identification is of significant interest for history and conservation research, but it is still hindered by analytes’ low concentration and poor fastness. In this work, a minimally invasive approach for dye identification is presented. The procedure is designed to accompany noninvasive analyses of inorganic substances for comprehensive studies of complex cultural heritage matrices, in compliance with their soundness. Liquid extraction of madder, turmeric, and indigo dyes was performed directly from paint layers and textiles. The extraction was supported by hydrogels, which themselves can undergo multitechnique analyses in the place of samples. After extraction, Ag colloid pastes were applied on the gels for SERS analyses, allowing for the identification of the three dyes. For the HPLC-MS/MS analyses, re-extraction of the dyes was followed by a clean-up step that was successfully applied on madder and turmeric. The colour change perceptivity after extraction was measured with colorimetry. The results showed ΔE values mostly below the upper limit of rigorous colour change, confirming the gentleness of the procedure.

Details

Language :
English
ISSN :
14203049
Volume :
28
Issue :
14
Database :
Directory of Open Access Journals
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
edsdoj.4e9cb5616534d4ea1cd0133f933bcc9
Document Type :
article
Full Text :
https://doi.org/10.3390/molecules28145290