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The application of principal component analysis and non-negative matrix factorization to analyze time-resolved optical waveguide absorption spectroscopy data

机译:主成分分析和非负矩阵分解在时间分辨光波导吸收光谱数据分析中的应用

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摘要

Time-resolved optical waveguide absorption spectroscopy (OWAS) makes use of an evanescent field to detect the polarized absorption spectra of sub-monomolecular adlayers. This technique is suitable for the investigation of kinetics at the solid-liquid interface of dyes, pigments, fluorescent molecules, quantum dots, metallic nanoparticles, and proteins with chromophores. In this work, we demonstrate for the first time the application of non-negative matrix factorization (NMF) to the analysis of time-resolved OWAS data, because NMF prevents the negative factors from occurring, avoids contradicting physical reality, and makes factors more easily interpretable. Meanwhile, principal component analysis (PCA) is researched for the comparison of NMF. Two-factor loadings and scores derived by PCA and NMF are consistent with the results analyzed by the function of time/wavelength-absorbance, Moreover, NMF avoids contradicting physical reality, and makes factors more easily interpretable. We believe that NMF will provide a valuable analysis route to allow processing of increasingly large and complex data sets.
机译:时间分辨光波导吸收光谱法(OWAS)利用an逝场检测亚单分子掺质的偏振吸收光谱。该技术适用于研究染料,颜料,荧光分子,量子点,金属纳米颗粒和具有发色团的蛋白质在固液界面上的动力学。在这项工作中,我们首次展示了非负矩阵分解(NMF)在时间分辨OWAS数据分析中的应用,因为NMF可以防止出现负因素,避免与物理现实相矛盾,并使因素更容易可解释的。同时,对主成分分析(PCA)进行了研究,以比较NMF。 PCA和NMF得出的两因素负荷和得分与通过时间/波长吸收函数分析的结果一致,而且NMF避免了与物理现实相矛盾的问题,并使因素更易于解释。我们相信NMF将提供有价值的分析途径,以允许处理越来越大和复杂的数据集。

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