Identification of additives in poly(vinylacetate) artist's paints using PY-GC-MS.

Anal Bioanal Chem

Instituto de Restauración del Patrimonio, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022, Valencia, Spain.

Published: May 2010

AI Article Synopsis

  • Commercial PVAc paints for artists contain various additives like surfactants and thickeners that enhance their properties but are hard to detect analytically due to low concentrations.
  • A new analytical method involving thermally assisted pyrolysis-silylation GC-MS is proposed to identify these minor components in dried paint films more effectively than traditional methods.
  • Analysis of five different commercial paints revealed significant differences in additive content that correlate with their mechanical properties.

Article Abstract

Commercial poly(vinyl acetate) (PVAc) paint formulations for artists include a number of compounds in addition to the PVAc polymer and pigments to improve the physical and chemical properties of the resulting product. Among the most common additives are surfactants, coalescing agents, defoamers, freeze-thaw agents and thickeners. These products significantly influence the behaviour of the dried film. Nevertheless, they are usually difficult to detect with conventional analytical methods given their low concentration. In order to identify these additives, present in the dried film as minor components, an analytical method based on in situ thermally assisted pyrolysis-silylation gas chromatography-mass spectrometry (GC-MS) using hexamethyldisilazane as a derivatisation reagent is proposed. This method improves the conventional GC-MS analysis performed by direct pyrolysis and enables the simultaneous identification of the PVAc binding medium and the additives included by the manufacturer in the commercial paint. Five different commercial PVAc paints have been analysed, namely, armour green, burnt umber, oriental red, raw umber and white from Flashe. Internal plasticiser VeoVa consisting of C(10) fatty acids with highly branched chains has been recognised from the MS spectra. On the other hand, the differences found in the additive content of the studied paints, in particular the poly(ethylene glycol)-type surfactant, are in good agreement with their mechanical properties.

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Source
http://dx.doi.org/10.1007/s00216-010-3505-2DOI Listing

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