Diffusion Measurements To Understand Dynamics and Structuring in Solutions Involving a Homologous Series of Ionic Liquids

Author:

Morris Daniel C.123,Morris Adrian R.4,Price William S.3,Prescott Stuart W.1,Harper Jason B.23ORCID

Affiliation:

1. School of Chemical Engineering University of New South Wales, UNSW Sydney 2052 Australia

2. School of Chemistry University of New South Wales, UNSW Sydney 2052 Australia

3. School of Science Western Sydney University Penrith NSW 2751 Australia

4. Renzo Tonin & Associates Surry Hills NSW 2010 Australia

Abstract

AbstractThe self‐diffusion coefficients of each of the components in mixtures containing pyridine and each of the homologous series 1‐alkyl‐3‐methylimidazolium bis(trifluoromethanesulfonyl)imides in acetonitrile were determined using NMR diffusometry (i. e., Pulsed Gradient Spin Echo). The nature of solvation was found to change significantly with the proportion of salt in the mixtures. Increased diffusion coefficients (when corrected for viscosity) for the molecular components were observed with increasing proportion of ionic liquid and with increasing alkyl chain length on the cation. Comparison of the molecular solvents suggests increased interactions in solution of the pyridine with other components of the mixture, consistent with the proposed interactions shown previously to drive changes in reaction kinetics. Discontinuities were seen in the diffusion data for each species in solution across different ionic liquids between the hexyl and octyl derivatives, suggesting a change in the structuring in solution as the alkyl chain on the cation changes and demonstrating the importance of such when considering homologous series.

Funder

Australian Research Council

Australian Institute of Nuclear Science and Engineering

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics

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