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首页> 外文期刊>Analytical and bioanalytical chemistry >Influence of composition and roughness on the pigment mapping of paintings using mid-infrared fiberoptics reflectance spectroscopy (mid-IR FORS) and multivariate calibration
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Influence of composition and roughness on the pigment mapping of paintings using mid-infrared fiberoptics reflectance spectroscopy (mid-IR FORS) and multivariate calibration

机译:成分和粗糙度对使用中红外光纤反射光谱法(mid-IR FORS)和多元校准的绘画颜料映射的影响

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摘要

Mid-infrared fiberoptics reflectance spectroscopy (mid-IR FORS) is a very interesting technique for artwork characterization purposes. However, the fact that the spectra obtained are a mixture of surface (specular) and volume (diffuse) reflection is a significant drawback. The physical and chemical features of the artwork surface may produce distortions in the spectra that hinder comparison with reference databases acquired in transmission mode. Several studies attempted to understand the influence of the different variables and propose procedures to improve the interpretation of the spectra. This article is focused on the application of mid-IR FORS and multivariate calibration to the analysis of easel paintings. The objectives are the evaluation of the influence of the surface roughness on the spectra, the influence of the matrix composition for the classification of unknown spectra, and the capability of obtaining pigment composition mappings. A first evaluation of a fast procedure for spectra management and pigment discrimination is discussed. The results demonstrate the capability of multivariate methods, principal component analysis (PCA), and partial least squares discrimination analysis (PLS-DA), to model the distortions of the reflectance spectra and to delimitate and discriminate areas of uniform composition. The roughness of the painting surface is found to be an important factor affecting the shape and relative intensity of the spectra. A mapping of the major pigments of a painting is possible using mid-IR FORS and PLS-DA when the calibration set is a palette that includes the potential pigments present in the artwork mixed with the appropriate binder and that shows the different paint textures.
机译:中红外光纤反射光谱(mid-IR FORS)是用于艺术品表征的非常有趣的技术。但是,获得的光谱是表面(镜面)反射和体积(漫反射)反射的混合物这一事实是一个重大缺陷。艺术品表面的物理和化学特征可能会在光谱中产生扭曲,从而妨碍与以传输模式获取的参考数据库进行比较。几项研究试图理解不同变量的影响,并提出改善光谱解释的程序。本文重点介绍中红外FORS和多元校准在画架画分析中的应用。目的是评估表面粗糙度对光谱的影响,基质成分对未知光谱分类的影响以及获得颜料成分图的能力。讨论了光谱管理和色素识别的快速程序的首次评估。结果证明了多元方法,主成分分析(PCA)和偏最小二乘判别分析(PLS-DA)能够模拟反射光谱的畸变并划定和区分均匀成分的区域。发现油漆表面的粗糙度是影响光谱的形状和相对强度的重要因素。当校准套件是一个调色板时,可以使用中红外FORS和PLS-DA对绘画中的主要颜料进行映射,该调色板包括艺术品中存在的潜在颜料与适当的粘合剂混合并显示出不同的涂料纹理。

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