Record High Hole Mobility in Polymer Semiconductors via Side-Chain Engineering
Gyeongsang National University · Chung-Ang University
Abstract
Charge carrier mobility is still the most challenging issue that should be overcome to realize everyday organic electronics in the near future. In this Communication, we show that introducing smart side-chain engineering to polymer semiconductors can facilitate intermolecular electronic communication. Two new polymers, P-29-DPPDBTE and P-29-DPPDTSE, which consist of a highly conductive diketopyrrolopyrrole backbone and an extended branching-position-adjusted side chain, showed unprecedented record high hole mobility of 12 cm(2)/(V·s). From photophysical and structural studies, we found that moving the branching position of the side chain away from the backbone of these polymers resulted in increased…
Citation impact
- FWCI
- 74.64
- Percentile
- 100%
- References
- 24
Authors
5Topics & keywords
- Side chain
- Intermolecular force
- Stacking
- Branching (polymer chemistry)
- Polymer
- Chemistry
- Organic semiconductor
- Electron mobility
- Affordable and clean energy