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2D-IR spectroscopy for oil paint conservation: Elucidating the water-sensitive structure of zinc carboxylate clusters in ionomers

机译:2D-IR光谱学用于油漆保护:阐明离聚物中羧酸锌簇的水敏结构

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摘要

The molecular structure around metal ions in polymer materials has puzzled researchers for decades. This question has acquired new relevance with the discovery that aged oil paint binders can adopt an ionomer structure when metal ions leached from pigments bind to carboxylate groups on the polymerized oil network. The characteristics of the metal-polymer structure are expected to have important consequences for the rate of oil paint degradation reactions such as metal soap formation and oil hydrolysis. Here, we use two-dimensional infrared (2D-IR) spectroscopy to demonstrate that zinc carboxylates formed in paint films containing zinc white pigment adopt either a coordination chain– or an oxo-type cluster structure. Moreover, it was found that the presence of water governs the relative concentration of these two types of zinc carboxylate coordination. The results pave the way for a molecular approach to paintings conservation and the application of 2D-IR spectroscopy to the study of polymer structure.
机译:数十年来,高分子材料中金属离子周围的分子结构一直困扰着研究人员。当发现从颜料中浸出的金属离子结合到聚合油网上的羧酸酯基团上时,老化的油漆粘合剂可以采用离聚物结构,这一问题与发现有了新的关联。预期金属-聚合物结构的特征将对油漆降解反应的速率(例如金属皂的形成和油的水解)产生重要影响。在这里,我们使用二维红外(2D-IR)光谱法证明包含锌白颜料的漆膜中形成的羧酸锌采用配位链或氧化型簇结构。此外,发现水的存在决定了这两种类型的羧酸锌配位化合物的相对浓度。研究结果为分子生物学方法进行油画保存和二维红外光谱在聚合物结构研究中的应用铺平了道路。

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