Unified Description of Charge-Carrier Mobilities in Disordered Semiconducting Polymers
Eindhoven University of Technology · Dutch Polymer Institute · +1 more institution
Abstract
From a numerical solution of the master equation for hopping transport in a disordered energy landscape with a Gaussian density of states, we determine the dependence of the charge-carrier mobility on temperature, carrier density, and electric field. Experimental current-voltage characteristics in devices based on semiconducting polymers are excellently reproduced with this unified description of the mobility. At room temperature it is mainly the dependence on carrier density that plays an important role, whereas at low temperatures and high fields the electric field dependence becomes important. Omission in the past of the carrier-density dependence has led to an underestimation of the hopping distance and…
Citation impact
- FWCI
- 34.51
- Percentile
- 100%
- References
- 23
Authors
8- WFW. F. PasveerCorresponding
Eindhoven University of Technology, Dutch Polymer Institute
- JCJ. Cottaar
Dutch Polymer Institute, Eindhoven University of Technology
- CTC. Tanase
Dutch Polymer Institute
- RCR. Coehoorn
Philips (Netherlands)
- PAP. A. Bobbert
Eindhoven University of Technology, Dutch Polymer Institute
Topics & keywords
- Charge-carrier density
- Charge carrier
- Electric field
- Materials science
- Condensed matter physics
- Electron mobility
- Density of states
- Polymer
- Affordable and clean energy