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Raman spectroscopy in the analysis of food and pharmaceutical nanomaterials

机译:拉曼光谱法在食品和药物纳米材料分析中的应用

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摘要

Raman scattering is an inelastic phenomenon. Although its cross section is very small, recent advances in electronics, lasers, optics, and nanotechnology have made Raman spectroscopy suitable in many areas of application. The present article reviews the applications of Raman spectroscopy in food and drug analysis and inspection, including those associated with nanomaterials. Brief overviews of basic Raman scattering theory, instrumentation, and statistical data analysis are also given. With the advent of Raman enhancement mechanisms and the progress being made in metal nanomaterials and nanoscale metal surfaces fabrications, surface enhanced Raman scattering spectroscopy has become an extra sensitive method, which is applicable not only for analysis of foods and drugs, but also for intracellular and intercellular imaging. A Raman spectrometer coupled with a fiber optics probe has great potential in applications such as monitoring and quality control in industrial food processing, food safety in agricultural plant production, and convenient inspection of pharmaceutical products, even through different types of packing. A challenge for the routine application of surface enhanced Raman scattering for quantitative analysis is reproducibility. Success in this area can be approached with each or a combination of the following methods: (1) fabrication of nanostructurally regular and uniform substrates; (2) application of statistic data analysis; and (3) isotopic dilution.
机译:拉曼散射是一种非弹性现象。尽管其横截面非常小,但电子,激光,光学和纳米技术的最新进展使拉曼光谱学适合许多应用领域。本文概述了拉曼光谱在食品和药物分析和检查中的应用,包括与纳米材料相关的那些。还简要介绍了基本的拉曼散射理论,仪器和统计数据分析。随着拉曼增强机制的出现以及金属纳米材料和纳米级金属表面加工技术的发展,表面增强拉曼散射光谱已成为一种额外的灵敏方法,不仅适用于食品和药物的分析,还适用于细胞内和细胞内的分析。细胞间成像。拉曼光谱仪和光纤探头的结合在诸如工业食品加工中的监视和质量控制,农业植物生产中的食品安全以及对药品的方便检查方面具有巨大的潜力,即使通过不同类型的包装也是如此。常规应用表面增强拉曼散射进行定量分析的挑战是再现性。可以通过以下方法中的每一种或方法的组合来取得该领域的成功:(1)纳米结构规则且均匀的基底的制造; (2)统计数据分析的应用; (3)同位素稀释。

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