Alejandro Gutiérrez-Quintanilla, Rasa Platakyte, Michèle Chevalier, Claudine Crépin, Justinas Ceponkus
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引用次数: 0
Abstract
Acetylacetone, double-deuterated acetylacetone and hexafluoroacetylacetone were isolated in inert matrices and investigated by means of Raman scattering and infrared absorption spectroscopic methods, combined with theoretical calculations. The ability of Raman spectroscopy to access low wavenumber modes enables the study of vibrational modes involved in internal hydrogen bonds that are challenging to observe with infrared absorption spectroscopy. An almost complete set of vibrational modes for the studied molecules was observed experimentally, facilitating a comprehensive assessment of different computational approaches. The large dataset obtained allowed for an improved assignment of vibrational bands and firmly confirmed the existence of only one chelated isomer of acetylacetone, double-deuterated acetylacetone and hexafluoroacetylacetone in matrices. The experimental data also highlighted the effects of deuteration and fluorination.
期刊介绍:
The Journal of Raman Spectroscopy is an international journal dedicated to the publication of original research at the cutting edge of all areas of science and technology related to Raman spectroscopy. The journal seeks to be the central forum for documenting the evolution of the broadly-defined field of Raman spectroscopy that includes an increasing number of rapidly developing techniques and an ever-widening array of interdisciplinary applications.
Such topics include time-resolved, coherent and non-linear Raman spectroscopies, nanostructure-based surface-enhanced and tip-enhanced Raman spectroscopies of molecules, resonance Raman to investigate the structure-function relationships and dynamics of biological molecules, linear and nonlinear Raman imaging and microscopy, biomedical applications of Raman, theoretical formalism and advances in quantum computational methodology of all forms of Raman scattering, Raman spectroscopy in archaeology and art, advances in remote Raman sensing and industrial applications, and Raman optical activity of all classes of chiral molecules.