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Article

Following the Light: Use of Multimodal Imaging and Fiber Optic Spectroscopy to Evaluate Aging in Daylight Fluorescent Artists’ Pigments

Garman Art Conservation Department, SUNY-Buffalo State, 1300 Elmwood Ave, Buffalo, NY 14222, USA
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Author to whom correspondence should be addressed.
Colorants 2022, 1(2), 208-225; https://doi.org/10.3390/colorants1020013
Submission received: 11 February 2022 / Revised: 16 May 2022 / Accepted: 18 May 2022 / Published: 23 May 2022
(This article belongs to the Special Issue Colorants: Ancient and Modern)

Abstract

Daylight fluorescent artists’ colors have been well established as fugitive. Upon exposure to light, these vibrant colors can fade and exhibit color shifts. Artwork containing these fluorescent colorants presents complex challenges for art conservators faced with conserving these inherently problematic materials. This paper examined nine fluorescent colorants obtained from Kremer Pigmente, referred to the previous literature and research, and attempted to quantify the visual and photographic observations of fading and color changes. It provides additional information that could be useful in considering conservation documentation and treatment. Fiber optic spectroscopy using ultraviolet and visible light sources was used to measure the spectral shifts of the colorants before and after exposure to light. The fluorescent colors exhibited alterations in intensity coupled with primary peak shifts in the spectrum corresponding to the optical fading and color shifts. Multimodal imaging was executed to analyze the pigments in different regions of the spectrum before and after aging, which has not been documented before with these fluorescent colorants. Imaging in various regions of the spectrum indicated differences in absorption and reflectance between the pigments as captured by a modified camera. The results were compared to recently published research including the identification of the dyes present in the Kremer line of pigments. Multimodal imaging and fiber optic spectroscopy provided valuable information for future documentation and conservation of artworks containing these colorants. Specifically, these non-invasive techniques provide a method to document and identify the spectral changes between the aged and unaged pigment, graph and predict the direction of overall color change, and provide useful data for establishing future conservation treatment protocols.
Keywords: fluorescent; pigments; fiber optic spectroscopy; multimodal imaging; Day-Glo; fading fluorescent; pigments; fiber optic spectroscopy; multimodal imaging; Day-Glo; fading

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MDPI and ACS Style

Beckett, F.; Shugar, A. Following the Light: Use of Multimodal Imaging and Fiber Optic Spectroscopy to Evaluate Aging in Daylight Fluorescent Artists’ Pigments. Colorants 2022, 1, 208-225. https://doi.org/10.3390/colorants1020013

AMA Style

Beckett F, Shugar A. Following the Light: Use of Multimodal Imaging and Fiber Optic Spectroscopy to Evaluate Aging in Daylight Fluorescent Artists’ Pigments. Colorants. 2022; 1(2):208-225. https://doi.org/10.3390/colorants1020013

Chicago/Turabian Style

Beckett, Fiona, and Aaron Shugar. 2022. "Following the Light: Use of Multimodal Imaging and Fiber Optic Spectroscopy to Evaluate Aging in Daylight Fluorescent Artists’ Pigments" Colorants 1, no. 2: 208-225. https://doi.org/10.3390/colorants1020013

APA Style

Beckett, F., & Shugar, A. (2022). Following the Light: Use of Multimodal Imaging and Fiber Optic Spectroscopy to Evaluate Aging in Daylight Fluorescent Artists’ Pigments. Colorants, 1(2), 208-225. https://doi.org/10.3390/colorants1020013

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