Identifying the origin of delayed electroluminescence in a polariton organic light-emitting diode
Abstract
Modifying the energy landscape of existing molecular emitters is an attractive challenge with favourable outcomes in chemistry and organic optoelectronic research. It has recently been explored through strong light-matter coupling studies where the organic emitters were placed in an optical cavity. Nonetheless, a debate revolves around whether the observed change in the material properties represents novel coupled system dynamics or the unmasking of pre-existing material properties induced by light-matter interactions. Here, for the first time, we examined the effect of strong coupling in polariton organic light-emitting diodes via time-resolved electroluminescence studies. We accompanied our experimental analysis with theoretical fits using a model of coupled rate equations accounting for all major mechanisms that can result in delayed electroluminescence in organic emitters. We found that in our devices the delayed electroluminescence was dominated by emission from trapped charges and this mechanism remained unmodified in the presence of strong coupling.
Keywords
Cite
@article{arxiv.2309.12737,
title = {Identifying the origin of delayed electroluminescence in a polariton organic light-emitting diode},
author = {Ahmed Gaber Abdelmagid and Hassan A. Qureshi and Michael A. Papachatzakis and Olli Siltanen and Manish Kumar and Ajith Ashokan and Seyhan Salman and Kimmo Luoma and Konstantinos S. Daskalakis},
journal= {arXiv preprint arXiv:2309.12737},
year = {2025}
}
Comments
11 pages + 8 supp pages, 4 figures + 8 supp figures