Decoupling of ionic conductivity from structural dynamics in polymerized ionic liquids

Author:

Sangoro J. R.123,Iacob C.456,Agapov A. L.723,Wang Y.8910,Berdzinski S.111213,Rexhausen H.14151617,Strehmel V.111213,Friedrich C.18192021,Sokolov A. P.891072,Kremer F.456

Affiliation:

1. Department of Chemical & Biomolecular Engineering

2. University of Tennessee

3. Knoxville, USA

4. Institute of Experimental Physics I

5. University of Leipzig

6. Leipzig, Germany

7. Department of Chemistry and Department of Physics & Astronomy

8. Chemical Sciences Division

9. Oak Ridge National Laboratory

10. Oak Ridge, USA

11. Department of Chemistry and Institute for Coatings and Surface Chemistry

12. Hochschule Niederrhein University of Applied Sciences

13. D-47798 Krefeld, Germany

14. Institute of Chemistry

15. Applied Polymer Chemistry

16. University of Potsdam

17. D-14476 Potsdam-Golm, Germany

18. Freiburger Materialforschungszentrum (FMF) und Institut fuer Makromolekulare

19. Chemie der Albert-Ludwigs

20. Universitaet Freiburg i. Br.

21. Germany

Abstract

Charge transport is more efficient in polymerized than molecular ionic liquids.

Publisher

Royal Society of Chemistry (RSC)

Subject

Condensed Matter Physics,General Chemistry

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