November 2023

Journal

Influence of Chain Rigidity and Dielectric Constant on the Glass Transition Temperature in Polymerized Ionic Liquids

By:
Bocharova, Vera ; Wojnarowska, Zaneta E; Cao, Pengfei ; Fu, Yao; Kumar, Rajeev ; Li, Bingrui ; Novikov, Vladimir; Kisliuk, Alexander ; Saito, Tomonori ; Mays, Jimmy W; Sumpter, Bobby G; Sokolov, Alexei P
Journal Name:
The Journal of Physical Chemistry B
Page Number:
11511-11519
Volume:
121
Issue Number:
51
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1021/acs.jpcb.7b09423

Abstract

Polymerized ionic liquids (PolyILs) are promising candidates for a wide range of technological applications due to their single ion conductivity and good mechanical properties. Tuning the glass transition temperature (Tg) in these materials constitutes a major strategy to improve room temperature conductivity while controlling their mechanical properties. In this work, we show experimental and simulation results demonstrating that in these materials Tg does not follow a universal scaling behavior with the volume of the structural units Vm (including monomer and counterion). Instead, Tg is significantly influenced by the chain flexibility and polymer dielectric constant. We propose a simplified empirical model that includes the electrostatic interactions and chain flexibility to describe Tg in PolyILs. Our model enables design of new functional PolyILs with the desired Tg.