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结合调制红外光谱和化学计量学解析中间表面物种。

Resolution of intermediate surface species by combining modulated infrared spectroscopy and chemometrics.

机构信息

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290 CABA, C1425FQB, Argentina; Laboratorio de Desarrollo Analítico y Quimiometría (LADAQ), Cátedra de Química Analítica I, Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Ciudad Universitaria, Santa Fe, S3000GLN, Argentina.

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290 CABA, C1425FQB, Argentina; Instituto de Desarrollo Tecnológico para la Industria Química (INTEC), Universidad Nacional del Litoral, CONICET, Güemes 3450, Santa Fe, S3000GLN, Argentina.

出版信息

Anal Chim Acta. 2019 Feb 21;1049:38-46. doi: 10.1016/j.aca.2018.10.052. Epub 2018 Oct 26.

Abstract

In this work, aiming at exploiting the essential particularities of modulation excitation spectroscopy (MES) coupled to phase sensitive detection (PSD) and chemometrics, a data analysis procedure was implemented to analyze phase-resolved infrared (IR) data. The fundamental principle of the proceedings is the application of successive multivariate curve resolution-alternating least squares (MCR-ALS) resolutions to MES-PSD IR data. The applicability of the strategy was evaluated in several cases of simulated data considering the effect of spectral band overlapping and presence of noise. Outcomes related to data-processing are depicted in detail. As a proof of concept, the data resolution approach was validated by resolving an experimental real system related to the adsorption-desorption dynamic of oxalic acid on titanium dioxide by in situ IR spectroscopy in attenuated total reflection (ATR) mode. After data resolution, different oxalate species were assigned to each spectral band and information about the kinetics in terms of phase lag was obtained. In the light of the obtained results, this approach is rather appealing in other research fields, very helpful for the non-chemometric community and foresees manifold applications, specially, in catalytic system investigations.

摘要

在这项工作中,旨在利用调制激发光谱(MES)与相敏检测(PSD)和化学计量学相结合的基本特殊性,我们实施了数据分析程序来分析相分辨红外(IR)数据。该程序的基本原理是将连续的多变量曲线分辨交替最小二乘法(MCR-ALS)分辨率应用于 MES-PSD IR 数据。考虑到光谱带重叠和噪声的影响,我们在几个模拟数据的情况下评估了该策略的适用性。详细描述了与数据处理相关的结果。作为概念验证,我们通过解析一个与钛二氧化物上草酸吸附-解吸动力学有关的实验真实系统的原位红外光谱(ATR 模式)实验数据,验证了数据解析方法。在数据解析之后,我们将不同的草酸物种分配给每个光谱带,并获得了关于相位滞后的动力学信息。根据获得的结果,该方法在其他研究领域很有吸引力,对非化学计量学领域非常有帮助,并预见了多种应用,特别是在催化系统研究中。

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