Cargando…

A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations

This study aims to investigate the chemical stability of some modern paint samples exposed to a new Light Emitting Diode (LED)-lighting system and a halogen lamp by using micro-attenuated total reflectance of Fourier transform infrared spectroscopy (µ-ATR-FTIR), µ-Raman, pyrolysis—gas chromatography...

Descripción completa

Detalles Bibliográficos
Autores principales: Pintus, Valentina, Szabó, Ferenc, Noel Tóth, Dávid, Wieland, Karin, Csuti, Péter, Anghelone, Marta, Santorelli, Ottavia, Salvadori, Carlotta, Haisch, Christoph, Sterflinger, Katja, Schreiner, Manfred
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8707339/
https://www.ncbi.nlm.nih.gov/pubmed/34960992
http://dx.doi.org/10.3390/polym13244441
_version_ 1784622412483002368
author Pintus, Valentina
Szabó, Ferenc
Noel Tóth, Dávid
Wieland, Karin
Csuti, Péter
Anghelone, Marta
Santorelli, Ottavia
Salvadori, Carlotta
Haisch, Christoph
Sterflinger, Katja
Schreiner, Manfred
author_facet Pintus, Valentina
Szabó, Ferenc
Noel Tóth, Dávid
Wieland, Karin
Csuti, Péter
Anghelone, Marta
Santorelli, Ottavia
Salvadori, Carlotta
Haisch, Christoph
Sterflinger, Katja
Schreiner, Manfred
author_sort Pintus, Valentina
collection PubMed
description This study aims to investigate the chemical stability of some modern paint samples exposed to a new Light Emitting Diode (LED)-lighting system and a halogen lamp by using micro-attenuated total reflectance of Fourier transform infrared spectroscopy (µ-ATR-FTIR), µ-Raman, pyrolysis—gas chromatography/mass spectrometry (Py-GC/MS), and thermally assisted hydrolysis and methylation of GC/MS (THM-GC/MS). Those investigations were performed before and after the exposure of the samples to lightings for 1250, 2400, 3300, and 5000 h. The results obtained with µ-Raman spectroscopy show the high stability of the selected inorganic pigments after the exposure to the lighting systems; while similar to the UV/Vis/NIR results reported in a previous study, µ-ATR-FTIR and THM-GC/MS results evidence greater chemical changes occurring principally on the linseed oil binder-based mock-ups among the acrylic and alkyd-based samples. Moreover, principal component analyses (PCA) and hierarchical cluster analyses (HCA) of THM-GC/MS results highlight that those changes were mostly dependent on the exposure time and on the type of pigment, while being independent of the lighting system used. Finally, semi-quantitative µ-ATR-FTIR results show slight pigment enrichment at the paint surface due to the auto and photo-oxidative degradation of the linseed oil binder.
format Online
Article
Text
id pubmed-8707339
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87073392021-12-25 A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations Pintus, Valentina Szabó, Ferenc Noel Tóth, Dávid Wieland, Karin Csuti, Péter Anghelone, Marta Santorelli, Ottavia Salvadori, Carlotta Haisch, Christoph Sterflinger, Katja Schreiner, Manfred Polymers (Basel) Article This study aims to investigate the chemical stability of some modern paint samples exposed to a new Light Emitting Diode (LED)-lighting system and a halogen lamp by using micro-attenuated total reflectance of Fourier transform infrared spectroscopy (µ-ATR-FTIR), µ-Raman, pyrolysis—gas chromatography/mass spectrometry (Py-GC/MS), and thermally assisted hydrolysis and methylation of GC/MS (THM-GC/MS). Those investigations were performed before and after the exposure of the samples to lightings for 1250, 2400, 3300, and 5000 h. The results obtained with µ-Raman spectroscopy show the high stability of the selected inorganic pigments after the exposure to the lighting systems; while similar to the UV/Vis/NIR results reported in a previous study, µ-ATR-FTIR and THM-GC/MS results evidence greater chemical changes occurring principally on the linseed oil binder-based mock-ups among the acrylic and alkyd-based samples. Moreover, principal component analyses (PCA) and hierarchical cluster analyses (HCA) of THM-GC/MS results highlight that those changes were mostly dependent on the exposure time and on the type of pigment, while being independent of the lighting system used. Finally, semi-quantitative µ-ATR-FTIR results show slight pigment enrichment at the paint surface due to the auto and photo-oxidative degradation of the linseed oil binder. MDPI 2021-12-17 /pmc/articles/PMC8707339/ /pubmed/34960992 http://dx.doi.org/10.3390/polym13244441 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pintus, Valentina
Szabó, Ferenc
Noel Tóth, Dávid
Wieland, Karin
Csuti, Péter
Anghelone, Marta
Santorelli, Ottavia
Salvadori, Carlotta
Haisch, Christoph
Sterflinger, Katja
Schreiner, Manfred
A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title_full A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title_fullStr A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title_full_unstemmed A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title_short A Multi-Analytical Approach for Studying the Effect of New LED Lighting Systems on Modern Paints: Chemical Stability Investigations
title_sort multi-analytical approach for studying the effect of new led lighting systems on modern paints: chemical stability investigations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8707339/
https://www.ncbi.nlm.nih.gov/pubmed/34960992
http://dx.doi.org/10.3390/polym13244441
work_keys_str_mv AT pintusvalentina amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT szaboferenc amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT noeltothdavid amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT wielandkarin amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT csutipeter amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT anghelonemarta amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT santorelliottavia amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT salvadoricarlotta amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT haischchristoph amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT sterflingerkatja amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT schreinermanfred amultianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT pintusvalentina multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT szaboferenc multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT noeltothdavid multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT wielandkarin multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT csutipeter multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT anghelonemarta multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT santorelliottavia multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT salvadoricarlotta multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT haischchristoph multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT sterflingerkatja multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations
AT schreinermanfred multianalyticalapproachforstudyingtheeffectofnewledlightingsystemsonmodernpaintschemicalstabilityinvestigations