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首页> 外文期刊>Applied Spectroscopy >Application of the Kubelka–Munk Correction for Self-Absorption of Fluorescence Emission in Carmine Lake Paint Layers
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Application of the Kubelka–Munk Correction for Self-Absorption of Fluorescence Emission in Carmine Lake Paint Layers

机译:Kubelka-Munk校正在胭脂红色漆层中自发吸收荧光的应用

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摘要

The variations of the fluorescence emission of carmine lake travelling through an absorbing and scattering medium, such as a paint layer, were investigated by ultraviolet (UV)–visible absorption, fluorescence spectroscopy, and imaging techniques. Samples of the lake were studied in dilute and saturated solutions, on a reference test panel and a real case study. Relevant spectral modifications have been observed as a function of the lake concentration mainly consisting of a fluorescence quenching, red shift of emission maxima, and deformation of emission band. The application of a correction factor based on the Kubelka–Munk model allowed fluorescence spectra obtained in solution and on painted samples of known composition to be compared and correlated, highlighting that the fluorescence of the lake within paint layers is affected by both self-absorption and aggregation phenomena. This approach has been successfully applied on a painting by G. Vasari for the noninvasive identification of carmine lake. The results reported here emphasize the necessity of taking physical phenomena into account in the interpretation of the fluorescence spectra for a proper and reliable characterization and identification of painting materials in works of art.
机译:通过紫外(UV)-可见光吸收,荧光光谱和成像技术,研究了胭脂红湖水穿过吸收和散射介质(例如涂料层)的荧光发射变化。在参考测试板上和真实案例研究中,以稀溶液和饱和溶液研究了该湖的样本。已经观察到相关的光谱变化是色淀浓度的函数,主要由荧光猝灭,发射最大值的红移和发射带的变形组成。基于Kubelka-Munk模型的校正因子的应用允许比较溶液和在已知成分的涂漆样品上获得的荧光光谱并进行关联,从而突出显示涂料层中色淀的湖光受到自吸收和自发影响。聚集现象。该方法已成功地应用于G. Vasari的一幅画中,用于胭脂红湖的非侵入式识别。此处报道的结果强调在荧光光谱的解释中必须考虑物理现象,以便对艺术品中的绘画材料进行正确和可靠的表征和识别。

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    《Applied Spectroscopy》 |2009年第12期|1323-1330|共8页
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