| Literature DB >> 30940852 |
Francesca Modugno1, Fabiana Di Gianvincenzo2,3, Ilaria Degano2, Inez Dorothé van der Werf4, Ilaria Bonaduce2, Klaas Jan van den Berg4.
Abstract
ModernEntities:
Year: 2019 PMID: 30940852 PMCID: PMC6445089 DOI: 10.1038/s41598-019-41893-9
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Oil paints layers investigated in this study. Pigment and extender composition taken from supplier information and[5].
| Trademark and paint type | Talens (TA) “Rembrandt Artists’ Quality” | Old Holland (OH) “Classic Oil Colour” | Winsor&Newton (WN) “Artists’ Oil Colour” |
|---|---|---|---|
| Pigment and extenders/additives composition | Cadmium Zinc Sulfide (PY35); aluminium stearate extender | Cadmium Sulfide; alumina pigment extender or coating; hydrogenated castor oil | Cadmium Zinc Sulfide (PY35), MgCO3, BaSO4; aluminium containing extender |
| Year of preparation and treatment: | 2006: Artificial ageing at high (75%) and low (6%) RH%, in the dark at 70 °C, 12 weeks | ||
| 2016: Curing at high (75%) and low (6%) RH%, ambient light and temperature, 9 weeks | |||
Figure 1Paint layers and curing in dry and wet environment.
Figure 2HPLC-ESI-Q-ToF extract ion chromatograms relative to fatty acids and acylglycerols in: (a) Talens fresh paint from the tube; (b) Talens 2006 paint layer; (c) Old Holland fresh paint from the tube; (d) Old Holland 2006 paint layer; (e) Winsor&Newton fresh paint from the tube; (f) Winsor&Newton 2006 paint layer. FAAs-HQ = HQ derivatives of free fatty acids (black line); MAGs = monoacylglycerols (blue line); DAGs = diacylglycerols (gray line); TAGs = triacylglycerols (red line); castor wax markers (green line). L = lauric acid; M = myristic acid; P = palmitic acid; Ma = margaric acid; O = oleic acid; L = lauric acid; S = stearic acid; Ar = arachidic acid; Lg = lignoceric acid. mP = monopalmitin; mS = monostearin. P: palmityl (C16:0); Po: palmitoleyl (C16:1); Ln: linolenyl (C18:3); L: linoleyl (C18:2); O: oleyl (C18:1); S: stearyl (C18:0); Ar: arachidyl (C20:0). (nOH) subscript indicates that the corresponding acyl chain contains n hydroxyl substituents.
Ppb of FFAs determined by HPLC-ESI-Q-ToF analysis of Cd yellow fresh paints and 2006 paint layers Talens (TA), Old Holland (OH) and Winsor&Newton (WN).
| TA fresh | TA2006 | OH fresh | OH 2006 | WN fresh | WN 2006 | |
|---|---|---|---|---|---|---|
| Ppb of FFA | 0.0 | 40.0 | 0.0 | 0.2 | 4.0 | 0.4 |
Figure 3ESI-Q-TOF spectrum of 2006 Old Holland paint layer before artificial ageing. The main identified compounds are highlighted.
Selected ions used for the PCA of the ESI-Q-ToF data. FA: fatty acid; MAG: monoacylglycerol; DAG: diacylglycerol; TAG: triacylglycerol. All ions are [M − H]− except where indicated. *The DAGs corresponding to m/z 329 and 485 are still unidentified; their masses categorize them as diacylglycerols, but their exact structure has not been clarified. Nonetheless, they were included in the selection of ions because their trends appeared to be related to the ageing process.
| m/z | Compound type | Compound | Abbreviation |
|---|---|---|---|
| 187 | FA | Azelaic acid (α,ω-nonandioic acid) | A |
| 255 | FA | Palmitic acid (hexadecanoic acid) | P |
| 261 | MAG | Azelaylglycerol | MA |
| 281 | FA | Oleic acid (9 | O |
| 283 | FA | Stearic acid (octadecanoic acid) | S |
| 297 | FA | Hydroxy-oleic acid | O(OH) |
| 299 | FA | Hydroxy-stearic acid | S(OH) |
| 329* | DAG | Unknown | 329 |
| 431 | DAG | Diazelayl glycerol ester | AA |
| 485* | DAG | Unknown (polyhydroxylated) | 485 |
| 499 | DAG | Azelayl-, palmitylglycerol | AP |
| 525 | DAG | Azelayl-, oleylglycerol | AO |
| 527 | DAG | Azelayl-, stearylglycerol | AS |
| 601 | TAG | Triazelaylglycerol | AAA |
| 669 | TAG | Diazelayl-, palmitylglycerol | AAP |
| 697 | TAG | Diazelayl-, stearylglycerol | AAS |
| 737 | TAG | Azelayl, dipalmitylglycerol | APP |
| 765 | TAG | Azelayl-, palmityl-, stearylglycerol | APS |
Figure 4Score plot and loading plot obtained in the PCA of ESI-Q-ToF data for the 2006 Talens paint models during artificial ageing in wet (W, blue dots) and dry (D, red dots) conditions. The suffix number indicates the number of weeks of artificial ageing before sampling. TA 0 (empty dot) corresponds to the sample collected before starting the artificial ageing.
Figure 6Score plot and loading plot obtained in the PCA of the ESI-Q-ToF data for the 2006 Winsor&Newton paint models during artificial ageing in wet (W, blue dots) and dry (D, red dots) conditions. The suffix number indicates the number of weeks of artificial ageing before sampling. WN 0 (empty dot) corresponds to the sample collected before starting the artificial ageing.
Figure 5Score plot and loading plot obtained in the PCA of the ESI-Q-ToF data for the 2006 Old Holland paint models during artificial ageing in wet (W, blue dots) and dry (D, red dots) conditions. The suffix number indicates the number of weeks of artificial ageing before sampling. OH 0 (empty dot) corresponds to the sample collected before starting the artificial ageing.
Figure 7Trends of the characteristic ratios calculated from the ESI-Q-TOF spectra of the extracts of the 2006 Talens paint layers during artificial ageing at high and low RH%. 0 weeks corresponds to the samples before artificial ageing.
Figure 8Trends of the characteristic ratios calculated from the ESI-Q-TOF spectra of the extracts of the 2006 Old Holland paint layers during artificial ageing at high and low RH%. 0 weeks corresponds to the samples before artificial ageing.
Figure 9Trends of the characteristic ratios calculated from the ESI-Q-TOF spectra of the extracts of the 2006 Winsor&Newton paint layers during artificial ageing at high and low RH%. 0 weeks corresponds to the samples before artificial ageing.
Figure 10A/P, P/S and A/AA ratios of the extracts of the Talens (TA), Old Holland (OH) and Winsor&Newton (WN) paints prepared in 2016 and cured at room temperature, in different RH% conditions for 9 weeks (the data corresponding to the OH paint cured 6 weeks in high RH% environment could not be acquired).
Characteristic ratios calculated from the Py-GC/MS TIC and EIC chromatograms of the 2016 paint layers after 9 weeks of curing and of the 2006 paint layers after 12 weeks of artificial ageing, at high and low RH%. Talens (TA), Old Holland (OH) and Winsor&Newton (WN). Replicate measurements performed on one sample indicated typical RSD of 3%.
| TA 2016 | TA 2006 | OH 2016 | OH 2006 | WN 2016 | WN 2006 | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| High RH% | Low RH% | High RH% | Low RH% | High RH% | Low RH% | High RH% | Low RH% | High RH% | Low RH% | High RH% | Low RH% | |
| A/P | 0.6 | 0.7 | 2.2 | 1.0 | 1.7 | 1.7 | 1.5 | 0.7 | 1.1 | 1.4 | 1.0 | 1.3 |
| A/S | 0.6 | 0.7 | 1.0 | 0.9 | 2.0 | 2.0 | 1.0 | 0.7 | 2.1 | 2.7 | 1.9 | 2.4 |
| P/S | 1.0 | 1.0 | 0.4 | 0.9 | 1.2 | 1.2 | 0.7 | 0.9 | 2.0 | 2.0 | 1.8 | 1.8 |
| FA(OH)/S | 0.5 | 0.2 | 0.3 | 0.2 | 0.7 | 0.6 | 0.6 | 0.2 | 1.1 | 1.2 | 0.7 | 0.6 |
Figure 11Py-GC/MS total ion chromatograms of Winsor&Newton paint reconstructions (2016) cured at (a) high and (b) low RH%. n-OH Cx = n hydroxy linear saturated monocarboxylic acid with x carbon atoms. n-OH Cx:y = n-hydroxy linear monocarboxylic acid with x carbon atoms and y unsaturations. The peaks labelled a-d correspond to unidentified oxidised fatty acids.