arXiv · 2305.19540
Numerical analysis and optimization of a hybrid layer structure for triplet-triplet fusion mechanism in organic light-emitting diodes
Abstract
In this study, we develop a steady state and time-dependent exciton diffusion model including singlet and triplet excitons coupled with a modified Poisson and drift-diffusion solver to explain the mechanism of hyper triplet-triplet fusion (TTF) organic light-emitting diodes (OLEDs). Using this modified simulator, we demonstrate various characteristics of OLEDs, including the J-V curve, internal quantum efficiency, transient spectrum, and electric profile. This solver can also be used to explain the mechanism of hyper-TTF-OLEDs and analyze the loss from different exciton mechanisms. Furthermore, we perform additional optimization of hyper-TTF-OLEDs that increases the internal quantum efficiency by approximately 33% (from 29% to 40%).
Explore related subjects
Keep this discovery
Jun-Yu Huang, Hsiao-Chun Hung, Kung-Chi Hsu, Chia-Hsun Chen, Pei-Hsi Lee, Hung-Yi Lin, Bo-Yen Lin, Man-kit Leung, Tien-Lung Chiu, Jiun-Haw Lee, Richard H. Friend, Yuh-Renn Wu. 2023-05-31. Numerical analysis and optimization of a hybrid layer structure for triplet-triplet fusion mechanism in organic light-emitting diodes. https://doi.org/10.1002/adts.202200633
Cite the original work for its findings. Save a collection to share your selection of sources.