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Utilizing VO 2 as a Hole Injection Layer for Efficient Charge Injection in Quantum Dot Light-Emitting Diodes Enables High Device Performance.

Han Bin ChoJu Yeon HanHa Jun KimNoolu Srinivasa Manikanta ViswanathYong Min ParkJeong Wan MinSung Woo JangHeesun YangWon Bin Im
Published in: ACS applied materials & interfaces (2023)
Quantum dot light-emitting diodes (QLEDs) are promising devices for display applications. Polyethylenedioxythiophene:polystyrene sulfonate (PEDOT:PSS) is a common hole injection layer (HIL) material in optoelectronic devices because of its high conductivity and high work function. Nevertheless, PEDOT:PSS-based QLEDs have a high energy barrier for hole injection, which results in low device efficiency. Therefore, a new strategy is needed to improve the device efficiency. Herein, we have demonstrated a bilayer-HIL using VO 2 and a PEDOT:PSS-based QLED that exhibits an 18% external quantum efficiency (EQE), 78 cd/A current efficiency (CE), and 25,771 cd/m 2 maximum luminance. In contrast, the PEDOT:PSS-based QLED exhibits an EQE of 13%, CE of 54 cd/A, and maximum luminance of 14,817 cd/m 2 . An increase in EQE was attributed to a reduction in the energy barrier between indium tin oxide (ITO) and PEDOT:PSS, caused by the insertion of a VO 2 HIL. Therefore, our results could demonstrate that using a bilayer-HIL is effective in increasing the EQE in QLEDs.
Keyphrases
  • perovskite solar cells
  • ultrasound guided
  • nk cells
  • magnetic resonance
  • solar cells
  • energy transfer
  • magnetic resonance imaging
  • computed tomography
  • molecular dynamics
  • quantum dots