Article ID Journal Published Year Pages File Type
1232212 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2015 7 Pages PDF
Abstract

•We measured MIR, NIR and Raman spectra of 8 n-alkanes and 7 1-chloroalkanes in the liquid phase.•The contributions from the terminal and midchain methylene units were separated in asynchronous 2D correlation spectra.•From MCR-ALS were obtained the group spectra that represent the main structural units.•The group spectra were used for the spectral prediction.

Numerous attempts were undertaken to resolve the absorption originating from different parts of alkanes. The separation of the contributions from the terminal and midchain methylene units was observed only in the spectra of solid alkanes at low temperatures. On the other hand, for liquid alkanes this effect was not reported as yet. In this study, ATR-IR, Raman and NIR spectra of eight n-alkanes and seven 1-chloroalkanes in the liquid phase were measured from 1000 to 12,000 cm−1. The spectra were analyzed by using two-dimensional (2D) correlation approach and chemometrics methods. It was shown that in 2D asynchronous contour plots, constructed from the spectra of n-alkanes and 1-chloroalkanes, the methylene band was resolved into two components. These two components were assigned to the terminal and midchain methylene groups. For the first time, the contributions from these two molecular fragments were resolved in the spectra of liquid n-alkanes and 1-chloroalkanes. MCR-ALS resolved these spectra into two components that were assigned to the ethyl and midchain methylene groups. These components represent the group spectra that can be used for assignment, spectral analysis and prediction of unknown spectra. The spectral prediction based on the group spectra provides very good results for n-alkanes, especially in the first and second overtone regions.

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Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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