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Characterization of Pigment-Binding Media Stsyems - Comparison of Non-Invasive In-Situ Reflection FTIR with Transmission FTIR Microscopy

机译:颜料结合介质系统的表征-非侵入性原位反射FTIR与透射FTIR显微镜的比较

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摘要

A novel external reflection FTIR device, which enables nondestructive analyses in the region from 4000-450 cm-1 with a measuring point diameter of approximately 5 mm, was tested for the identification of pigments and binding media in two modern paintings and several mockups with traditional pigment-binding media combinations. Comparative measurements were carried out with minute samples using a diamond cell for transmission FTIR microscopy. The results were interpreted by comparison to database spectra measured in transmission mode. The appearance of distorted peaks in raw reflection spectra impedes a direct comparison with the collected spectra in the transmission mode. Best matches with database spectra were obtained applying the Kramers-Kronig transformation to the reflection spectra of substances showing narrow bands, particularly in the region of about 1900 to 580 cm-1. In the case of modern paintings a good match between transmission and reflection data could be achieved in the fingerprint region. It was possible to identify organic pigments PY 3 (Pigment Yellow 3) and PR 4 (Pigment Red 4) as well as calcite and PVAc (polyvinyl acetate). The identification of materials used for preparation of the mockups was successful for lead white, calcite, Prussian blue, indigo, ultramarine, azurite, malachite, Arabic gum and linseed oil, whereas the transformed spectra of cobalt blue, Naples yellow and especially of smalt and the proteinaceous binding media could not be identified using database spectra.
机译:测试了一种新颖的外部反射FTIR设备,该设备能够在4000-450 cm-1的区域内进行无损分析,测量点直径约为5 mm,用于鉴定两幅现代绘画和几种传统模型中的颜料和粘合剂颜料结合介质组合。使用金刚石池进行透射FTIR显微镜对微小样品进行比较测量。通过与在传输模式下测量的数据库光谱进行比较来解释结果。原始反射光谱中扭曲峰的出现阻碍了与透射模式下收集的光谱的直接比较。将Kramers-Kronig变换应用于显示窄带的物质的反射光谱,尤其是在大约1900至580 cm-1的区域中,可获得与数据库光谱的最佳匹配。在现代绘画的情况下,可以在指纹区域中实现透射和反射数据之间的良好匹配。可以确定有机颜料PY 3(颜料黄3)和PR 4(颜料红4)以及方解石和PVAc(聚乙酸乙烯酯)。铅样,方解石,普鲁士蓝,靛蓝,群青,青铜石,孔雀石,孔雀石,阿拉伯树胶和亚麻籽油的制备样的材料鉴定成功,而钴蓝,那不勒斯黄尤其是smalt和使用数据库光谱无法识别蛋白质结合介质。

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