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An OHD-RIKES and simulation study comparing a benzylmethylimidazolium ionic liquid with an equimolar mixture of dimethylimidazolium and benzene.


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Authors

Xue, Lianjie 
Tamas, George 
Matthews, Richard P 
Stone, Anthony J 
Hunt, Patricia A 

Abstract

The principal difference between 1-benzyl-3-methyl-imidazolium triflimide [BzC1im][NTf2] and an equimolar mixture of benzene and dimethylimidazolium triflimide [C1C1im][NTf2] is that in the former the benzene moieties are tied to the imidazolium ring, while in the latter they move independently. We use femtosecond optical heterodyne-detected Raman-induced Kerr effect spectroscopy (OHD-RIKES) and molecular simulations to explore some properties of these two systems. The Kerr spectra show small differences in the spectral densities; the simulations also show very similar environments for both the imidazolium rings and the phenyl or benzene parts of the molecules. The low frequency vibrational densities of states are also similar in the model systems. In order to perform the simulations we developed a model for the BzC1im cation and found that the barriers to rotation of the two parts of the molecule are low.

Description

Keywords

0306 Physical Chemistry (incl. Structural)

Journal Title

Phys Chem Chem Phys

Conference Name

Journal ISSN

1463-9076
1463-9084

Volume Title

17

Publisher

Royal Society of Chemistry (RSC)
Sponsorship
This research was supported by the National Science Foundation under Grant CHE-1153077 (ELQ). We thank the National Science Foundation for funding the purchase of the NMR instrumentation (CHE-1048553) used in this project.