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2D correlation spectroscopy and multivariate curve resolution in analyzing pH-dependent evolving systems monitored by FT-IR spectroscopy, a comparative study

机译:二维相关光谱法和多变量曲线分辨率用于分析由FT-IR光谱法监测的pH依赖的演化系统的比较研究

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Multivariate curve resolution (MCR) and 2D correlation spectroscopy (2D-CoS), including sample-sample correlation, have been applied to the analysis of evolving midinfrared spectroscopic data sets obtained from titrations of organic acids in aqueous solution. In these data sets, well-defined species with significant differences in their spectra are responsible for the spectral variation observed. The two fundamentally different chemometric techniques have been evaluated and discussed on the basis of experimental and supportive simulated data sets. MCR gives information that can be directly related to the chemical species that is of importance from a practical point of view, whereas 2D-CoS results normally require more interpretation. The obtained conclusions are regarded valid for similar evolving data, which are increasingly being encountered in analytical chemistry when multivariate detectors are used to follow dynamic processes, including separations as well as chemical reactions, among others. [References: 36]
机译:多元曲线分辨率(MCR)和2D相关光谱法(2D-CoS)(包括样品-样品相关性)已应用于分析从水溶液中有机酸滴定中获得的不断发展的中红外光谱数据集。在这些数据集中,光谱清晰显着的界限分明的物种是观察到的光谱变化的原因。在实验和支持性模拟数据集的基础上,对两种根本不同的化学计量技术进行了评估和讨论。从实际的角度来看,MCR可以提供与重要化学物种直接相关的信息,而2D-CoS结果通常需要更多的解释。所获得的结论被认为对类似的不断发展的数据有效,当使用多元检测器跟踪动态过程(包括分离和化学反应等)时,在分析化学中越来越多地遇到这种情况。 [参考:36]

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