Please use this identifier to cite or link to this item: https://doi.org/10.3390/molecules27196301
Title: Comparison of ATR-FTIR and O-PTIR Imaging Techniques for the Characterisation of Zinc-Type Degradation Products in a Paint Cross-Section
Authors: Chua, Lynn
Banas, Agnieszka 
Banas, Krzysztof 
Keywords: Science & Technology
Life Sciences & Biomedicine
Physical Sciences
Biochemistry & Molecular Biology
Chemistry, Multidisciplinary
Chemistry
O-PTIR
ATR-FTIR imaging
paint cross-section
zinc lactate
gordaite
zinc soap
conservation
Issue Date: 1-Oct-2022
Publisher: MDPI
Citation: Chua, Lynn, Banas, Agnieszka, Banas, Krzysztof (2022-10-01). Comparison of ATR-FTIR and O-PTIR Imaging Techniques for the Characterisation of Zinc-Type Degradation Products in a Paint Cross-Section. MOLECULES 27 (19). ScholarBank@NUS Repository. https://doi.org/10.3390/molecules27196301
Abstract: ATR–FTIR (attenuated total reflection–Fourier-transform infrared) microscopy with imaging is widely used in the heritage field to characterise complex compositions of paint cross-sections. However, some limitations include the need for ATR crystal contact with the sample and the inability to resolve particle size below the IR diffraction limit. Recently, a novel O-PTIR (optical-photothermal infrared) spectroscopy technique claimed to open a new avenue for non-invasive, efficient, and reliable analysis at sub-micron resolution. O-PTIR produces transmission-like FTIR spectra for interpretation, without the need to touch the sample, which are highly favourable attributes for analysing heritage samples. This paper reports the comparison of O-PTIR and ATR–FTIR techniques applied to a cross-section embedding a thin paint fragment that delaminated from a late 19th to early 20th-century oil portrait. The hazy paint fragment consisted of zinc soaps (both crystalline and amorphous), gordaite (NaZn4Cl(OH)6SO4·6H2O), and zinc lactate, that could not all be well-resolved with ATR–FTIR imaging. With O-PTIR analysis, the degradation compounds could be resolved at sub-micron resolution with an equivalent or better signal-to-noise ratio. This case study shows how the two techniques can be used to obtain comprehensive information at a broad level with ATR–FTIR and a detailed level with O-PTIR.
Source Title: MOLECULES
URI: https://scholarbank.nus.edu.sg/handle/10635/243052
ISSN: 1420-3049
DOI: 10.3390/molecules27196301
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