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Influence of chloride, water, and organic solvents on the physical properties of ionic liquids

Pure and Applied Chemistry · 2000 · Vol. 72(12) · pp. 2275–2287
Kenneth R. SeddonAnnegret StarkMaría-José Torres

Abstract

Abstract We report here the first systematic study of the effect of impurities and additives (e.g., water, chloride, and cosolvents) on the physical properties of room-temperature ionic liquids. Remarkably, it was discovered that the viscosity of mixtures was dependent mainly on the mole fraction of added molecular solvents and only to a lesser extent upon their identity, allowing viscosity changes during the course of a reaction to be entirely predictable. While the addition of such molecular solvents decreases the viscosity and density, chloride impurities, arising from the preparation of the ionic liquids, increase viscosity dramatically. The commonly used methods of preparation were validated with respect to chloride impurity.

Ionic liquids properties and applicationsCatalysis and Oxidation ReactionsCO2 Reduction Techniques and CatalystsChemistryIonic liquidViscosityChlorideImpurityIonic bondingMole fractionInorganic chemistryOrganic chemistryChemical engineering

Funding

  • Royal Academy of Engineering
  • BP Global
  • European Commission
  • Queen's University
  • Engineering and Physical Sciences Research Council
Citations
2,238
FWCI
22.95
field-weighted impact
References
2
Percentile
100%
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Citations per year
References
HANDBOOK OF CHEMISTRY AND PHYSICS, 49th ed
The American Journal of the Medical Sciences · 1969 · 670 citations
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