Fingerprinting of ruby and sapphire gemstones through Fourier-transform infrared (FTIR) methodologies

Gemstones have significant economic, cultural, and artistic value. Advances in the treatment and production of synthetic gemstones create the need for more precise identification methods to distinguish natural stones from their synthetic and treated counterparts. Fourier-transform infrared (FTIR) sp...

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Detalles Bibliográficos
Autores: Soares de Sousa, António, Carvalho Gomes, Elsa María, Bayés García, Laura, Mariano, Alessandra di|||0000-0001-7334-4486, García-Vallès, Maite
Tipo de recurso: artículo
Fecha de publicación:2025
País:España
Institución:Universitat Politècnica de Catalunya (UPC)
Repositorio:UPCommons. Portal del coneixement obert de la UPC
Idioma:inglés
OAI Identifier:oai:upcommons.upc.edu:2117/426383
Acceso en línea:https://hdl.handle.net/2117/426383
https://dx.doi.org/10.5194/ejm-37-53-2025
Access Level:acceso abierto
Palabra clave:Synthetic gemstones
Fourier-transform infrared (FTIR) spectroscopy
Spectral fingerprints
Àrees temàtiques de la UPC::Enginyeria civil::Enginyeria de mines::Processament de minerals
Descripción
Sumario:Gemstones have significant economic, cultural, and artistic value. Advances in the treatment and production of synthetic gemstones create the need for more precise identification methods to distinguish natural stones from their synthetic and treated counterparts. Fourier-transform infrared (FTIR) spectroscopy, a non-destructive technique, is widely employed in advanced gemological analysis. In this study, 25 rubies and sapphires (natural, synthetic, and treated) from the Gemology School of the University of Barcelona were analysed using standard gemological instruments and FTIR spectroscopy. Distinct spectral fingerprints were identified for different categories and treatments. Untreated natural stones showed a band at 3230¿cm-1 (with an additional peak at 3310¿cm-1 in sapphires), whereas Verneuil specimens showed peaks at 3185, 2230, and 3310¿cm-1 (with this last peak being more intense the one at 3310¿cm-1 in sapphires), and flux specimens showed a 3310¿cm-1 band. Regarding treated gemstones, diffusion-treated samples showed a faint band centred at 3310¿cm-1; the glass-filled ones exhibited characteristic bands at 2250, 2600, and 3300¿cm-1; and the treated Verneuil ruby showed a band centred at 3310¿cm-1. These spectral fingerprints can be used to distinguish between natural, synthetic, and treated rubies and sapphires and contribute to existing databases, allowing for simpler and faster gemological analysis in future studies.