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Synthesis of Novel Polycations Using the Chemistry of Ionic Liquids

Rebeca MarcillaCentre for Electrochemical Technologies (CIDETEC), Paseo Miramón 196, Donostia-San Sebastian 20009, SpainJ. Alberto BlázquezPolymer Science & Technology Department and Institute for Polymer Materials, University of the Basque Country, M. Lardizabal, 3, 20018 Donostia-San Sebastian, SpainRaquel FernándezCentre for Electrochemical Technologies (CIDETEC), Paseo Miramón 196, Donostia-San Sebastian 20009, SpainHans J. GrandeCentre for Electrochemical Technologies (CIDETEC), Paseo Miramón 196, Donostia-San Sebastian 20009, SpainJosé A. PomposoCentre for Electrochemical Technologies (CIDETEC), Paseo Miramón 196, Donostia-San Sebastian 20009, SpainDavid MecerreyesCentre for Electrochemical Technologies (CIDETEC), Paseo Miramón 196, Donostia-San Sebastian 20009, Spain
2005en
ABI

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Abstract Summary: In this work, we report the synthesis of a great variety of polycations with varying counter‐anions. These new polymers were obtained by a simple anion exchange reaction facilitated by the phase separation of the resulting products. This strategy has been successfully applied to three different polycations, poly(1‐vinyl‐3‐ethylimidazolium bromide) poly(ViEtIm + Br − ), poly(1‐ethyl‐4‐vinylpyridinium bromide) poly(ViEtPy + Br − ), and poly(methacryloyloxyethyltrimethylammonium chloride) poly(EMTMA + Cl − ), with seven counter‐anions such as PF , CF 3 SO , (CF 3 SO 2 ) 2 N − , (CF 3 CF 2 SO 2 ) 2 N − , dodecylbenzenesulfonate, toluene‐4‐sulfonate, and bis(2‐ethylhexyl) hydrogen phosphate. The solubility range of the new polymeric ionic liquids becomes very broad, including apolar organic solvents and ionic liquids, depending on the nature of the counter‐anion. Thermogravimmetric experiments showed that the thermal stability of the PILs also depends on the nature of the counter‐anion improving in the order CF 3 SO > (CF 3 CF 2 SO 2 ) 2 N − > C 12 H 25 C 6 H 4 SO > PF > Br − > C 16 H 34 PO . A simple anion exchange procedure similar to the reaction used in ionic liquids chemistry is used to the synthesis of new polymeric ionic liquids (PILs). magnified image A simple anion exchange procedure similar to the reaction used in ionic liquids chemistry is used to the synthesis of new polymeric ionic liquids (PILs).

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