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Boosting Perovskite Light-Emitting Diodes Performance by Introducing High Work-function Metal Transition Layer

Applied Physics 2026-07-16 v1

Abstract

We investigated the impact of the anode's work-function on the performance of an all inorganic PeLED device which was hailed for stability and long lifetime with drift-diffusion and Poisson equations embedded as a computation package in Setfos, a commercially professional software to emulate LED. According to the simulation results, a conclusion that a thin high work-function metal layer inserted between indium tin oxide (ITO) and hole transport layer of nickel oxide (NiOx) substantially facilitated hole injection by decrementing the hole injection barrier. 2 nm thick gold (Au) had been checked and dramatically enhanced luminance intensity by more than 18 fold times had been attained. The situation went for other high work function metals like Pd and Pt as well. Our high work-function thin metal layers decorating anodes in PeLED in facilitating hole injection unfolds a new trajectory towards efficiently boosting PeLED luminance with a technique that is compatible with large scale fabrication process.

Cite

@article{arxiv.2607.14471,
  title  = {Boosting Perovskite Light-Emitting Diodes Performance by Introducing High Work-function Metal Transition Layer},
  author = {Laixiang Qin},
  journal= {arXiv preprint arXiv:2607.14471},
  year   = {2026}
}

Comments

The insertion of a high work function metal layer between hole transport layer and anode helps to boost the hole injection in PeLED, leading to substantially enhanced luminance in PeLED