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Polymorph identification in green Chinese architectural paints using Raman imaging and multivariate curve resolution

机译:使用拉曼成像和多变量曲线分辨率在绿色中国建筑涂料中的多晶型识别

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Distinguishing the polymorphs of basic copper chlorides is useful to inform how these materials were used as pigments in Western artworks. Raman imaging spectroscopy and multivariate curve resolution-alternating least squares (MCR-ALS) were employed to distinguish the minerals used in green pigments of several Chinese architectural paintings (12th-19th centuries). MCR-ALS generated component spectra for the Raman datasets, which allowed the resolution of trace materials separated from background features. This method established the mixtures of atacamite and botallackite polymorphs and their relative ratios in five paint samples and identified the mineral azurite, a basic copper carbonate in one sample. These findings identify and suggest a shift to synthetic basic copper chloride pigments in Chinese architectural paints based on the spectroscopically resolved spectra of these mixtures. Thus, this methodology has successfully been applied to paint cross sections to distinguish components and to inform on the materiality and history of objects.
机译:区分碱性氯化铜的多晶型有助于了解这些材料是如何在西方艺术品中用作颜料的。利用拉曼成像光谱和多变量曲线分辨率交替最小二乘法(MCR-ALS)对几种中国建筑绘画(12-19世纪)绿色颜料中使用的矿物质进行了鉴别。MCR-ALS生成了拉曼数据集的成分光谱,从而可以从背景特征中分离出痕量物质。该方法在五个油漆样品中确定了阿塔卡米岩和博塔卡米岩多晶型的混合物及其相对比例,并在一个样品中确定了矿物蓝铜矿,一种碱性碳酸铜。这些发现表明,基于这些混合物的光谱解析光谱,中国建筑涂料中的合成碱性氯化铜颜料正在发生转变。因此,该方法已成功应用于绘制横截面,以区分组件,并告知物体的重要性和历史。

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