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The potential of Raman spectroscopy in glass studies

机译:玻璃研究中拉曼光谱的潜力

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Raman spectroscopy is presented as a suitable and fast non-destructive technique to obtain qualitative information about glass samples of various origins (ancient and modern/industrial glass). A first application is the broad corpus of archaeological window glass that still needs to be investigated. For many sites, archaeologists have to deal with large collections of excavated glass samples and a selection of the most appropriate samples for chemical analysis is necessary. A fast classification can be made based on Raman spectra: different kind of glasses (Alkali-glass, High Lime-Low Alkali glass (HLLA)) have their own typical Raman signature. Even for glasses giving strong fluorescence, a classification is possible after a simple treatment of the Raman data. Raman spectroscopy has also been utilized to identify iron containing glasses. The effect of the iron content in glass samples is reflected on the topology of the Raman spectra: a strong link between the ratio of the Q_2/Q_3 vibration units of the silica tetrahedral structure is seen. Even (semi-) quantitative results can be determined from calibration lines if matrix effects are taken into account (similar glasses). In amber colored glasses, an extra peak ~415cm-1 in the Raman spectra indicates the presence of a Fe-S chromophore. Finally, in the fluorescent signals of some yellow and red glasses two peaks of Zn-Se-Cd-S nanocrystals have been identified.
机译:拉曼光谱是作为一个合适的和快速的非破坏性技术以获得关于不同来源(古今/工业玻璃)的玻璃样品的定性信息。第一种应用是考古窗玻璃的广泛的语料库仍然需要调查。对于许多站点,考古学家不得不面对出土的玻璃样品的大集合,并选择最合适的样品进行化学分析是必要的。快速分类可以基于拉曼光谱进行:不同种类的玻璃(无碱玻璃,高钙,低碱玻璃(HLLA))都有自己的典型拉曼签名。即使眼镜给人强烈的荧光,分类拉曼数据的简单处理后是可能的。拉曼光谱也已用于鉴定眼镜含铁。玻璃样品中的铁含量的效果反映在拉曼光谱的拓扑:二氧化硅四面体结构的Q_2 / Q_3振动单元的比例之间有很强的链路被看见。甚至(半)定量的结果可以从校准线确定是否基质效应考虑在内(类似于眼镜)。在琥珀色玻璃,一个额外的峰〜415厘米-1的拉曼光谱表示的Fe-S发色团的存在。最后,在一些黄色和红色眼镜的荧光信号的Zn-Se系镉-S纳米晶体的两个峰已经确定。

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