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Natural or synthetic? Simultaneous Raman/luminescence hyperspectral microimaging for the fast distinction of ultramarine pigments

机译:自然或合成? 同时拉曼/发光高光谱微观微观微观分析超微颜料的快速区别

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Genuine ultramarine has been one of the most precious blue pigments employed since ancient times. It used to be obtained by crushing and grinding the lapis lazuli rock and selectively extracting the blue mineral lazurite. Since 1828, when it was produced the synthetic version, the use of this much less expensive material became widespread and synthetic ultramarine blue replaced the natural one in painting palettes. The distinction between natural and synthetic ultramarine is, therefore, an important goal in authentication issues. Here, we present a hyperspectral microRaman imaging analysis, complemented with the characterization of ultramarine pigment samples in terms of colour, elemental composition and identification of crystalline phases by means of fiber optics reflection spectroscopy (FORS), X-Ray Fluorescence (XRF) and X-Ray diffraction (XRD), respectively. We show that a characteristic luminescence signature, easily detected in the course of standard Raman spectroscopic analysis using 785 nm as excitation, is indicative of the natural origin of the ultramarine blue pigments. Furthermore, simultaneous Raman/luminescence hyperspectral microimages allow the distinction between natural pigments of different quality thanks to the different intensity and spatial distribution of the lazurite characteristic band at 548 cm(-1) and those of the luminescent impurities in the region between 1200 and 2000 cm(-1). The establishment of a range of quality between different samples of lapis lazuli was also attempted taking into account the variations in the intensity of the Raman bands located at 548 cm(-1) and 1286 cm(-1). Finally, the feasibility of using the simultaneous Raman/luminescence features for authentication of ultramarine blue in a real historical context, even with non-invasive investigations, is illustrated with examples of different types of blue decorations from several halls of the Alhambra monumental ensemble, in Granada.
机译:真正的紫外线是自古以来最珍贵的蓝色颜料之一。它曾经通过破碎和磨削Lapis Lazuli岩石并选择性地提取蓝色矿物爬行物而获得。自1828年以来,当生产合成版本时,使用这种更便宜的材料变得广泛而且合成的超级蓝色更换了绘画调色板中的自然。因此,自然和合成的超级内的区别是认证问题的重要目标。在这里,我们提出了一种高光谱微扫描成像分析,通过光纤反射光谱(FORS),X射线荧光(XRF)和X,辅酶辅以在颜色,元素组合物,元素组合物和结晶相的鉴定方面表征脱氧颜料样本。 -ray分别衍射(XRD)。我们表明,在使用785nm作为激发的标准拉曼光谱分析中,在标准拉曼光谱分析中容易检测到特征发光签名,其是励磁的标准拉曼光谱分析,指示了ultramarine蓝色颜料的天然来源。此外,同时拉曼/发光高光显微镜允许不同质量的天然颜料之间的区别,相应地,由于548cm(-1)的丙酸盐特性带的不同强度和空间分布以及1200到2000之间的区域的发光杂质的不同强度和空间分布cm(-1)。还考虑了位于548厘米(-1)和1286cm(-1)的拉曼带强度的变化,建立了一系列的Lapis Lazuli之间的质量。最后,在真正的历史背景下使用同时拉曼/发光特征的可行性,即使是具有非侵入性的调查,也用不同类型的蓝色装饰品的示例来说明了来自阿罕布拉巨大的合奏的不同类型的蓝色装饰的例子。格拉纳达。

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