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Time-Resolved Photoluminescence Microscopy for the Analysis of Semiconductor-Based Paint Layers

机译:时间分辨光致发光显微镜用于分析基于半导体的涂料层

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摘要

In conservation, science semiconductors occur as the constituent matter of the so-called semiconductor pigments, produced following the Industrial Revolution and extensively used by modern painters. With recent research highlighting the occurrence of various degradation phenomena in semiconductor paints, it is clear that their detection by conventional optical fluorescence imaging and microscopy is limited by the complexity of historical painting materials. Here, we illustrate and prove the capabilities of time-resolved photoluminescence (TRPL) microscopy, equipped with both spectral and lifetime sensitivity at timescales ranging from nanoseconds to hundreds of microseconds, for the analysis of cross-sections of paint layers made of luminescent semiconductor pigments. The method is sensitive to heterogeneities within micro-samples and provides valuable information for the interpretation of the nature of the emissions in samples. A case study is presented on micro samples from a painting by Henri Matisse and serves to demonstrate how TRPL can be used to identify the semiconductor pigments zinc white and cadmium yellow, and to inform future investigations of the degradation of a cadmium yellow paint.
机译:在保护方面,科学半导体是所谓的半导体颜料的组成部分,这种颜料是在工业革命后生产的,并被现代画家广泛使用。随着最近的研究突出了半导体涂料中各种降解现象的发生,很明显,通过传统的光学荧光成像和显微术检测它们受到历史涂料的复杂性的限制。在这里,我们说明并证明了时间分辨光致发光(TRPL)显微镜的功能,该光谱仪在从纳秒到数百微秒的时间范围内均具有光谱和寿命敏感性,可用于分析由发光半导体颜料制成的涂料层的横截面。该方法对微量样品中的异质性敏感,并为解释样品中的排放物性质提供了有价值的信息。亨利·马蒂斯(Henri Matisse)对绘画中的微样品进行了案例研究,目的是演示如何使用TRPL鉴定半导体颜料锌白和镉黄,并为将来对镉黄涂料降解的研究提供参考。

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