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Revealing the influence of the strength of coulomb interactions on the viscosity and interfacial tension of ionic liquid cosolvent mixtures
Authors:Fröba Andreas P  Wasserscheid Peter  Gerhard Dirk  Kremer Heiko  Leipertz Alfred
Institution:Department of Engineering Thermodynamics, Institute of Chemical and Bioengineering, University of Erlangen-Nuremberg, D-91058 Erlangen, Germany. apf@ltt.uni-erlangen.de
Abstract:Within this work, viscosity and interfacial tension of selected ionic liquid cosolvent mixtures, EMIM]EtOSO3] (1-ethyl-3-methyl-immidazolium ethyl sulfate) with water and ethanol, were studied as a function of composition by surface light scattering (SLS) and the pendant drop method in a consistent manner, allowing a close insight into the nature of interactions. Here, we show that the viscosity behavior clearly reflects the bulk structure of the ionic liquid cosolvent mixtures and correlates to the fluid structure at the phase boundary. In contrast to former work, we found the viscosity of ionic liquid EMIM]EtOSO3] to be decreasing the stronger by small amounts of the cosolvents and the lower their dielectric constant. Furthermore, two distinct trends for the dependence of the viscosity on the cosolvent concentration were resolved. These were assigned to ion-dipole interactions dominating in the salt-rich region and to dipole-dipole interactions in the diluted one. A crossover between both regions is reflected by the interfacial tension data, where it seems that up to a "critical" concentration almost no cosolvent is present at the phase boundary.
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