Issue 17, 2020

Boosting the hole transport of conductive polymers by regulating the ion ratio in ionic liquid additives

Abstract

Poly(3,4-ethylenedioxythiophene) (PEDOT) has aroused great interest in organic electrics because of its high electrical conductivity and mechanical flexibility. To improve the charge transport, it can act as an ionic liquid (IL) additive due to its ion characteristics and high electrical conductivity. Herein, we investigated the hole-transport performance of PEDOT treated by ILs featuring specific ion ratios (4 : 1, 3 : 1, 2 : 1, 1 : 1, 1 : 2, 1 : 3, and 1 : 4) of the cation and anion through classical dynamics simulations and quantum mechanics computations. The hole mobility of the amorphous PEDOT, constituting nine EDOT monomers, could be improved to 16.81, 18.03, and 10.14 cm2 V−1 s−1 when synergistically regulating the ion ratio to 2 : 1, 3 : 1, and 4 : 1. Consequently, these ratios potentially achieved nearly a 100-fold improvement in the electrical conductivity with respect to the pristine system. The improvements mainly stemmed from the fact that decreasing the amount of anions in ILs and prolonging the chain length of PEDOT yielded an ordered face-to-face π–π stacking. The electronic coupling and charge excitation further confirmed that the anions play an active role in tunneling the hole transport in ILs/heterogeneous PEDOT, and the highest occupied molecular orbital (HOMO) energy level of PEDOT was up-shifted significantly after treatment by the ratios of 2 : 1, 3 : 1, and 4 : 1, which favored the electron-donating ability and was in line with the extraordinary enhancement of the hole mobility. Our results imply that regulating the ion ratio in ILs is a novel strategy for modulating the electronic properties and π-stacked morphology of PEDOT.

Graphical abstract: Boosting the hole transport of conductive polymers by regulating the ion ratio in ionic liquid additives

Supplementary files

Article information

Article type
Paper
Submitted
29 Feb 2020
Accepted
30 Mar 2020
First published
31 Mar 2020

Phys. Chem. Chem. Phys., 2020,22, 9796-9807

Boosting the hole transport of conductive polymers by regulating the ion ratio in ionic liquid additives

W. Ding, Z. Sun, X. Peng, C. Wang, Y. Zhang, H. He and S. Zhang, Phys. Chem. Chem. Phys., 2020, 22, 9796 DOI: 10.1039/D0CP01164A

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