Multi-Analytical Investigations of Andy Warhol's " Orange Car Crash ": Polymeric Materials in Modern Paints.
Valentina PintusAnthony J BaragonaFederica CappaChrista HaimlChristina HierlKatja SterflingerManfred SchreinerPublished in: Polymers (2022)
This work presents strategic multi-analytical investigations performed on " Orange Car Crash " by Andy Warhol in order to make a well-informed conservation decision. For determining the type of binding medium used in the artwork, Pyrolysis-Gas Chromatography/Mass Spectrometry (Py-GC/MS) and Thermally Assisted Hydrolysis and Methylation of GC/MS (THM-GC/MS) were employed. The presence of a coating was investigated by Py-GC/MS. Moreover, the comprehension and elucidation of the paint stratigraphy were studied by examining cross-sections of samples taken from both canvases with Optical Microscopy (OM) under reflected visible (Vis) and ultraviolet light (UV) and by Scanning Electron Microscopy with Energy Dispersive X-ray spectroscopy (SEM-EDX). The investigation of possible synthetic organic pigments (SOPs) and extenders was performed by µ-Raman spectroscopy, while micro-Attenuated Total Reflection of Fourier-Transform Attenuated Total Reflection (µ-ATR-FTIR) allowed us to assign each component detected by Py-GC/MS or THM-GC/MS to a specific layer. The data collected from " Orange Car Crash " show mostly the application of acrylic-based paint as well as alkyd with rosin acids-based ink, thus providing fundamental information about the paint stratigraphy and chemical composition of each layer. In addition to the goal of informing an appropriate conservation-restoration strategy, this work represents a rare scientific study of a work by Andy Warhol.
Keyphrases
- electron microscopy
- gas chromatography mass spectrometry
- high resolution
- raman spectroscopy
- solid phase extraction
- single molecule
- high speed
- gas chromatography
- liquid chromatography
- mass spectrometry
- dna methylation
- drug delivery
- big data
- electronic health record
- tandem mass spectrometry
- optical coherence tomography
- high throughput
- magnetic resonance imaging
- sewage sludge
- healthcare
- drug release
- genome wide
- oxidative stress
- anaerobic digestion
- magnetic resonance
- deep learning
- dna binding
- binding protein
- machine learning