Transport Properties of Highly Aligned Polymer Light-Emitting-Diodes
Abstract
We investigate hole transport in polymer light-emitting-diodes in which the emissive layer is made of liquid-crystalline polymer chains aligned perpendicular to the direction of transport. Calculations of the current as a function of time via a random-walk model show excellent qualitative agreement with experiments conducted on electroluminescent polyfluorene demonstrating non-dispersive hole transport. The current exhibits a constant plateau as the charge carriers move with a time-independent drift velocity, followed by a long tail when they reach the collecting electrode. Variation of the parameters within the model allows the investigation of the transition from non-dispersive to dispersive transport in highly aligned polymers. It turns out that large inter-chain hopping is required for non-dispersive hole transport and that structural disorder obstructs the propagation of holes through the polymer film.
Keywords
Cite
@article{arxiv.cond-mat/0007157,
title = {Transport Properties of Highly Aligned Polymer Light-Emitting-Diodes},
author = {A. Kambili and A. B. Walker},
journal= {arXiv preprint arXiv:cond-mat/0007157},
year = {2009}
}
Comments
4 pages, 5 figures