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Raman waveguide detector for low analyte concentrations in liquid samples

机译:拉曼波导检测器可检测液体样品中的低分析物浓度

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Abstract: Historically, Raman spectroscopy has not been widely used for analytical quantitative analysis for a variety of reasons, most notably, its lack of sensitivity. In this manuscript, we will demonstrate our efforts to effectively develop high sensitivity Raman detection for both static and dynamic liquid analysis. A Raman detection cell compatible with the elution volumes of minibore and microbore liquid chromatographic separations has been developed. The detector is a combination of a liquid core waveguide and a commercially available Raman instrument. The waveguide cell enhances the sensitivity of a typical Raman measurement upwards of 150 times, without resorting to surface enhancement or resonance approaches. In addition, the enhanced sensitivity allows one to capture spectral information in 'real time' as materials elute from a column. An information rich data matrix results from the combination of a temporal separation with species specific spectral signatures. There are a number of unique optical parameters that allow us to achieve such enhancements. We will discuss the physical detector and optical cell design as well demonstrate the effects of absorption, refractive index and numerical aperture on the sensitivity of the Raman measurements. The resultant Raman detector is a very sensitive and selective alternative to many of the currently available detectors used for flow analysis (HPLC, LC, FIA). !29
机译:摘要:从历史上看,拉曼光谱由于各种原因尚未广泛用于分析定量分析,最主要的是缺乏灵敏度。在本手稿中,我们将展示我们为有效开发用于静态和动态液体分析的高灵敏度拉曼检测所付出的努力。已经开发出与小孔和微孔液相色谱分离液的洗脱体积兼容的拉曼检测池。该检测器是液芯波导和市售拉曼仪器的组合。波导单元可将典型拉曼测量的灵敏度提高150倍以上,而无需借助表面增强或共振方法。此外,增强的灵敏度允许人们在色谱柱上洗脱出物质时“实时”捕获光谱信息。信息丰富的数据矩阵是由时间分隔与特定物种的光谱特征结合而成的。有许多独特的光学参数使我们能够实现这种增强。我们将讨论物理探测器和光学元件的设计,并演示吸收率,折射率和数值孔径对拉曼测量灵敏度的影响。所得的拉曼检测器是许多目前用于流量分析的检测器(HPLC,LC,FIA)的非常灵敏和选择性的替代品。 !29

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