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Effect of the PEDOT:PSS buffer layer on the performance of hybrid ZnO nanorods/polymer electroluminescent diode

Rezaie, Mahdiyar Nouri; Mohammadnejad, Shahram

Authors

Shahram Mohammadnejad



Abstract

Hybrid ZnO nanorods/polymer light-emitting diodes have excited much attraction because of the combination of high optoelectronic properties of ZnO nanorod with the variety and processability of polymers. In this research, the hybrid ZnO nanorods/polymer heterostructure UV-LED is investigated using ATLAS module of SILVACO TCAD software. In order to observe the influence of PEDOT:PSS hole injection layer/buffer layer in a AZO/ZnO NRs/MEH-PPV heterostructure device, first an ab initio approach have been done on PEDOT:PSS, MEH-PPV and AZO layers. The density of states, electronic band structure and the imaginary part of the dielectric function have been analyzed to deduce the electronic and optic features of the aforesaid layers. In continue, current–voltage characteristics and electroluminescence (EL) spectra of three structures of ITO/MEH-PPV/Al, ITO/ZnO/MEH-PPV/Al and ITO/ZnO/ZnO NR/MEH-PPV/Al have been simulated and compared with the literature experimental works to verify the simulation approach. Moreover, Langevin recombination rate, radiative recombination rate and luminescence power of the mentioned structures have been carefully investigated. Finally, the current–voltage characteristics, luminescence power and EL spectra of the novel proposed devices with the structures of ITO/PEDOT:PSS/AZO/ZnO NR/MEH-PPV/Al and ITO/PEDOT:PSS/ZnO/ZnO NR/MEH-PPV/Al have been investigated. The turn-on voltage of the proposed structure is decreased from 22 to 16 V because of the insertion of the PEDOT:PSS buffer layer and lowering of the hole injection barrier between ITO and ZnO layers. A little blue shift is observed around the wavelength of 380 nm which is attributed to the AZO layer.

Citation

Rezaie, M. N., & Mohammadnejad, S. (2020). Effect of the PEDOT:PSS buffer layer on the performance of hybrid ZnO nanorods/polymer electroluminescent diode. Optical and Quantum Electronics, 52(2), Article 115. https://doi.org/10.1007/s11082-020-2244-7

Journal Article Type Article
Acceptance Date Jan 31, 2020
Online Publication Date Feb 7, 2020
Publication Date 2020-02
Deposit Date Dec 15, 2023
Journal Optical and Quantum Electronics
Print ISSN 0306-8919
Electronic ISSN 1572-817X
Publisher Springer
Peer Reviewed Peer Reviewed
Volume 52
Issue 2
Article Number 115
DOI https://doi.org/10.1007/s11082-020-2244-7
Public URL https://durham-repository.worktribe.com/output/2027482