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External Cavity Quantum Cascade Laser-Based Mid-Infrared Dispersion Spectroscopy for Qualitative and Quantitative Analysis of Liquid-Phase Samples

机译:基于外腔量子级联激光的中红外分散光谱,用于液相样品的定性和定量分析

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摘要

Acquisition of classical absorption spectra of liquids in the mid-IR range with quantum cascade lasers (QCLs) is often limited in sensitivity by noise from the laser source. Alternatively, measurement of molecular dispersion (i.e., refractive index) spectra poses an experimental approach that is immune to intensity fluctuations and further offers a direct relationship between the recorded signal and the sample concentration. In this work, we present an external cavity quantum cascade laser (EC-QCL) based Mach-Zehnder interferometer setup to determine dispersion spectra of liquid samples. We present two approaches for acquisition of refractive index spectra and compare the qualitative experimental results. Furthermore, the performance for quantitative analysis is evaluated. Finally, multivariate analysis of a spectrally complex mixture comprising three different sugars is performed. The obtained figures of merit by partial least squares (PLS) regression modelling compare well with standard absorption spectroscopy, demonstrating the potential of the introduced dispersion spectroscopic method for quantitative chemical analysis.
机译:利用量子级联激光器(QCLS)采集中IR范围内的液体的经典吸收光谱通常受激光源噪声的灵敏度受到限制。或者,分子分散体(即,折射率)光谱的测量姿势姿势对强度波动的实验方法,并进一步提供记录信号和样品浓度之间的直接关系。在这项工作中,我们介绍了一个基于外腔量子级联激光(EC-QCL)的Mach-Zehnder干涉仪设置,以确定液体样品的分散光谱。我们提出了两种获取折射率光谱的方法,并比较了定性实验结果。此外,评估定量分析的性能。最后,进行包含三种不同糖的光谱复杂混合物的多变量分析。通过部分最小二乘(PLS)回归建模的所得优异的数字与标准吸收光谱相比良好,证明了引入的分散光谱法用于定量化学分析的电位。

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