首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Quantitative Raman Spectroscopy when the Signal-to-Noise is Below the Limit of Quantitation due to Fluorescence Interference: Advantages of a Moving Window Sequentially Shifted Excitation Approach
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Quantitative Raman Spectroscopy when the Signal-to-Noise is Below the Limit of Quantitation due to Fluorescence Interference: Advantages of a Moving Window Sequentially Shifted Excitation Approach

机译:当信号对噪声低于荧光干扰引起的定量极限时定量拉曼光谱:移动窗口的优点顺序移动激励方法

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摘要

Raman spectroscopy is a useful analytical tool. However, its application is often limited because shot noise from fluorescence obscures the Raman signal. In such cases, quantitative analysis is not possible when the signal-to-noise ratio (SNR) drops below two. A method is described for performing quantitative Raman spectroscopy that not only removes fluorescence backgrounds, but also results in a significant improvement in the SNR. The Raman data is extracted usinga moving window sequentially shifted excitation algorithm. To demonstrate the capabilities of the method, a binary mixture of two analytes at varying concentrations is quantified in the presence of a highly fluorescent dye. Linear calibration plots were constructed and validated for the binary model using individual Raman peaks with SNR ranging from 0.073-12.6; r(2) values are greater than 0.96 in all cases, with all but the weakest peaks yielding values greater than 0.997. The presented methoddemonstrates a universal and autonomous approach for the quantitative analysis of highly fluorescent samples via Raman spectroscopy. The lower limit on the SNR ratio for quantitative Raman analysis with the described method is 0.1. In order to assess the effectiveness of the presented method, the entire set of experiments was also processed using the more common shifted excitation Raman difference spectroscopy (SERDS) approach. The advantages of the proposed method over SERDS are demonstrated for both the detection limit and the SNR of the processed spectra.
机译:拉曼光谱是一种有用的分析工具。但是,它的应用通常是有限的,因为荧光的射击噪声模糊了拉曼信号。在这种情况下,当信噪比(SNR)下降到两个时,不可能进行定量分析。描述用于执行定量拉曼光谱的方法,其不仅可以去除荧光背景,而且还导致SNR的显着改善。通过移动窗口顺序移动激励算法提取拉曼数据。为了证明该方法的能力,在高荧光染料存在下量化两个分析物的两种分析物的二元混合物。使用单独的拉曼峰值构造并验证了线性校准图,使用0.073-12.6的SNR的单独拉曼峰进行了二进制模型;在所有情况下,r(2)值大于0.96,除了最弱的峰值,产生的值大于0.997。呈现的方法是通过拉曼光谱法定量分析高荧光样品的普遍和自主方法。用所述方法定量拉曼分析的SNR比率下限为0.1。为了评估所提出的方法的有效性,还使用更常见的偏移激发拉曼差异光谱(SERDS)方法处理整组实验。对于处理的光谱的检测极限和SNR,证明了所提出的方法的优点。

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