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首页> 外文期刊>Dyes and Pigments >Time through colors: A kinetic model of red vermilion darkening from Raman spectra
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Time through colors: A kinetic model of red vermilion darkening from Raman spectra

机译:通过颜色的时间:拉曼光谱的红色朱砂变暗的动力学模型

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摘要

Darkening of Red Vermilion (cinnabar) is a well-known phenomenon which needs, at the moment, a full comprehension of its nature. Some paintings reveal a disfiguring process of blackening degradation of Red Vermilion, albeit other relics preserve the original color during the time. The presence of halide elements like Cl- ions, in addition to the light exposure, represents the most alleged cause to explain the darkening phenomenon. However, the real effect of chlorine impurities is still not completely understood. In this study, starting from a multi-technique characterization, we propose a kinetic model of mutual composition of alpha/beta cinnabar derived by the experimental darkening of pure alpha synthetic cinnabar intentionally doped with Cl- ions and treated under prolonged UV light exposure. The model was further applied to ancient samples by analyzing the Raman spectra of antique cinnabar pigments belonging to manuscripts of XIII-XVII centuries.
机译:朱砂变黑是一个众所周知的现象,目前需要充分理解其本质。一些绘画揭示了红朱砂变黑退化的毁容过程,尽管其他文物在这段时间内保持了原始颜色。除了光照之外,氯离子等卤化物元素的存在是解释变暗现象的最有可能的原因。然而,氯杂质的真正影响仍不完全清楚。在这项研究中,从多技术表征开始,我们提出了一个α/β朱砂相互组成的动力学模型,该模型是通过对纯α合成朱砂(有意掺杂Cl-离子并在长时间紫外光照射下处理)进行实验性变暗而得出的。通过分析十三至十七世纪手稿中古董朱砂颜料的拉曼光谱,该模型进一步应用于古代样品。

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