Journal article
Redox tunable viologen-based porous organic polymers
C Hua, B Chan, A Rawal, F Tuna, D Collison, JM Hook, DM D'Alessandro
Journal of Materials Chemistry C | ROYAL SOC CHEMISTRY | Published : 2016
DOI: 10.1039/c6tc00132g
Open access
Abstract
The use of an organic donor-acceptor polymer containing a viologen electron acceptor and triarylamine electron donor as a platform in the development of multifunctional materials is presented. The highly robust porous organic polymer (POP) system allows for exploration of the interplay between electronic and host-guest interactions in the synthesized polymers, POP-V1, which contains a redox-active triarylamine core and POP-V2, which contains a redox-inactive benzene core, where each of the redox states present can be reversibly accessed. The degree of charge transfer in addition to the H2 and CO2 gas adsorption properties of the polymer are able to be tuned as a function of the electronic st..
View full abstractGrants
Funding Acknowledgements
We gratefully acknowledge support from the Australian Research Council and the Science and Industry Endowment Fund. We thank the EPSRC UK National Electron Paramagnetic Resonance Service at the University of Manchester.