Ion Transport via Structural Relaxations in Polymerized Ionic Liquids

ORAL

Abstract

We study the mechanisms underlying ion transport in poly(1-butyl-3-vinylimidazolium-hexafluorophosphate) polymer electrolytes. We consider polymer electrolytes of varying polymerized ionic liquid to ionic liquid (polyIL:IL) ratios and use atomistic molecular dynamics (MD) simulations to probe the dynamical and structural characteristics of the electrolyte. Our results reveal that anion diffusion along polymer backbone occurs primarily \textit{via }the formation and breaking of ion-pairs involving \textit{three }polymerized cationic monomers of \textit{two }different polymer chains. Moreover, we observe that the ionic diffusivities exhibit a direct correlation with the structural relaxation times of the ion-pairs and hydrogen bonds (H-bonds). These results provide new insights into the mechanisms underlying ion transport in polymerized ionic liquid electrolytes.

Authors

  • Venkat Ganesan

    University of Texas at Austin, Univ of Texas, Austin, University of Texas, Austin

  • Santosh Mogurampelly

    University of Texas at Austin, Institute for Computational Molecular Science, Temple University