Polymer Chemistry · 2012 · 20 citations · 54 references
Polymerisation MechanismsEngineeringSolvent EnvironmentChemistryPolymersIonic LiquidsDomain SegregationBiophysicsPolymer ChemistryIonic Liquid OccursPhysical ChemistryDeep Eutectic SolventPolymer SolutionSelf-assemblyPolymer ScienceIonic ConductorRaft PolymerisationPolymerization KineticsPolymer Self-assemblyPolymer Reaction
Recent evidence has suggested that the solvent environment in ionic liquids is dynamic and composed of polar and non-polar domains governed by the summation of weak interactions and self-assembly. Consequently, the effect of a nano-structured solvent environment on chemistries conducted in ionic liquids is coming under increased scrutiny. In this work we investigate how the domain-like structure of ionic liquids affects the kinetics and products of the reversible addition fragmentation chain transfer (RAFT) controlled free radical polymerisation (FRP) of methyl methacrylate in a number of room temperature ionic liquids. By utilising rotating frame Overhauser effect spectroscopy (ROESY) to probe the solvation environment of the 2-cyano prop-2-yl dithiobenzoate (CPDB) RAFT agent, we show that in almost all cases preferential partitioning of the dithiobenzoate-moiety of the RAFT agent into the ionic domain of the ionic liquid occurs.
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Hydrophobic, Highly Conductive Ambient-Temperature Molten Salts
Pierre Bonhôte, Ana-Paula Dias, N. Papageorgiou et al. · Inorganic Chemistry · 1996 · 4.3K citations · Full text
Nanoscale Segregation in Room Temperature Ionic Liquids
Alessandro Triolo, Olga Russina, H.-J. Bleif et al. · The Journal of Physical Chemistry B · 2007 · 1.2K citations