Speciation of adsorbates on surface of solids by infrared spectroscopy and chemometrics
Franck Vilmin1, Philippe Bazin2, Frédéric Thibault-Starzyk2
1Laboratoire Catalyse et Spectrochimie, ENSICAEN-Université de Caen-CNRS, 6 Boulevard Maréchal Juin, 14050 Caen, France; Manufacture Française des Pneumatiques Michelin, Place des Carmes, 63040 Clermont Ferrand Cedex 9, France.
Abstract:
Speciation, i.e. identification and quantification, of surface species on heterogeneous surfaces by infrared spectroscopy is important in many fields but remains a challenging task when facing strongly overlapped spectra of multiple adspecies. Here, we propose a new methodology, combining state of the art instrumental developments for quantitative infrared spectroscopy of adspecies and chemometrics tools, mainly a novel data processing algorithm, called SORB-MCR (SOft modeling by Recursive Based-Multivariate Curve Resolution) and multivariate calibration. After formal transposition of the general linear mixture model to adsorption spectral data, the main issues, i.e. validity of Beer-Lambert law and rank deficiency problems, are theoretically discussed. Then, the methodology is exposed through application to two case studies, each of them characterized by a specific type of rank deficiency: (i) speciation of physisorbed water species over a hydrated silica surface, and (ii) speciation (chemisorption and physisorption) of a silane probe molecule over a dehydrated silica surface. In both cases, we demonstrate the relevance of this approach which leads to a thorough surface speciation based on comprehensive and fully interpretable multivariate quantitative models. Limitations and drawbacks of the methodology are also underlined.
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