首页> 外文期刊>Analytical chemistry >Degradation Process of Lead Chromate in Paintings by Vincent van Gogh Studied by Means of Spectromicroscopic Methods. Part 5. Effects of Nonoriginal Surface Coatings into the Nature and Distribution of Chromium and Sulfur Species in Chrome Yellow Paints
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Degradation Process of Lead Chromate in Paintings by Vincent van Gogh Studied by Means of Spectromicroscopic Methods. Part 5. Effects of Nonoriginal Surface Coatings into the Nature and Distribution of Chromium and Sulfur Species in Chrome Yellow Paints

机译:文森特·凡·高的分光光度法研究了绘画中铬酸铅的降解过程。第5部分。非原始表面涂层对铬黄涂料中铬和硫物种的性质和分布的影响

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The darkening of lead chromate yellow pigments, caused by a reduction of the chromate ions to Cr(III) compounds, is known to affect the appearance of several paintings by Vincent van Gogh. In previous papers of this series, we demonstrated that the darkening is activated by light and depends on the chemical composition and crystalline structure of the pigments. In this work, the results of Part 2 are extended and complemented with a new study aimed at deepening the knowledge of the nature and distribution of Cr and S species at the interface between the chrome yellow paint and the nonoriginal coating layer. For this purpose, three microsamples from two varnished paintings by Van Gogh and a waxed low relief by Gauguin (all originally uncoated) have been examined. Because nonoriginal coatings are often present in artwork by Van Gogh and contemporaries, the understanding of whether or not their application has influenced the morphological and/or physicochemical properties of the chrome yellow paint underneath is relevant in view of the conservation of these masterpieces. In all the samples studied, microscopic X-ray fluorescence (μ-XRF) and X-ray absorption near edge structure (μ-XANES) investigations showed that Cr(III)-based alteration products are present in the form of grains inside the coating (generally enriched of S species) and also homogeneously widespread at the paint surface. The distribution of Cr(III) species may be explained by the mechanical friction caused by the coating application by brush that picked up and redistributed the superficial Cr compounds, likely already present in the reduced state as result of the photodegradation process. The analysis of the XANES profiles allowed us to obtain new insights into the nature of the Cr(III) alteration products, that were identified as sulfate-, oxide-, organo-metal-, and chloride-based compounds. Building upon the knowledge acquired through the examination of original paint samples and from the investigation of aged model paints in the last Part 4 paper, in this study we aim to characterize a possible relation between the chemical composition of the coating and the chrome yellow degradation pathways by studying photochemically aged model samples covered with a dammar varnish contaminated with sulfide and sulfate salts. Cr speciation results did not show any evidence of the active role of the varnish and added S species on the reduction process of chrome yellows.
机译:众所周知,铬酸铅黄色颜料的变黑是由于铬酸根离子还原为Cr(III)化合物而引起的,该现象会影响Vincent van Gogh创作的几幅画的外观。在该系列的前几篇论文中,我们证明了变暗被光激活,并且取决于颜料的化学组成和晶体结构。在这项工作中,第2部分的结果得到扩展和补充,该研究旨在加深对铬黄涂料与非原始涂层之间界面处Cr和S物种的性质和分布的了解。为此,对来自梵高的两幅清漆画和高更的蜡状低浮雕(最初全部未涂层)的三个微样品进行了检查。由于梵高及其同时代的人经常在艺术品中使用非原始涂料,因此,鉴于这些杰作的保存,对于了解其应用是否已影响下面的铬黄涂料的形态和/或物理化学特性的理解至关重要。在所有研究的样品中,微观X射线荧光(μ-XRF)和近边缘结构的X射线吸收(μ-XANES)研究表明,基于Cr(III)的蚀变产物以颗粒形式存在于涂层内部(通常富含S物种),并且均匀分布在油漆表面。 Cr(III)物种的分布可能是由刷子吸收并重新分布表面的Cr化合物(可能已因光降解过程而以还原态存在)的刷涂所引起的机械摩擦来解释的。 XANES分布图的分析使我们能够获得有关Cr(III)蚀变产物性质的新见解,这些产物被鉴定为硫酸盐,氧化物,有机金属和氯化物基化合物。在第四部分的最后一篇论文中,通过检查原始油漆样品和研究老化的模型油漆而获得的知识为基础,本研究旨在表征涂层的化学成分与铬黄降解途径之间的可能关系。通过研究覆盖有被硫化物和硫酸盐污染的达玛清漆的光化学老化模型样品。 Cr的形态分析结果未显示任何清漆和添加的S物种在铬黄还原过程中发挥积极作用的证据。

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