Solution-Processed Thick Hole-Transport Layer for Reliable Quantum-Dot Light-Emitting Diodes Based on an Alternatingly Doped Structure

  • Kim, Dong Hyun; 
  • Hwang, Jeong Ha; 
  • Seo, Eunyong; 
  • Lee, Kyungjae; 
  • Lim, Jaehoon; 
  • ... Lee, Donggu
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초록

The operating lifetime of quantum-dot light-emitting diodes (QLED) is a bottleneck for commercial display applications. To enhance the operational stability of QLEDs, we developed a robust solution-processed highly conductive hole-transport-layer (HTL) structure, which enables a thick HTL structure to mitigate the electric field. An alternating doping strategy, which involves multiple alternating stacks of N4,N4 '-di(naphthalen-1-yl)-N4,N4 '-bis(4-vinylphenyl)biphenyl-4,4 '-diamine and phosphomolybdic acid layers, could provide significantly improved conductivity; more specifically, the 90 nm-thick alternatingly doped HTL exhibited higher conductivity than the 45 nm-thick undoped HTL. Therefore, when applied to a QLED, the increase in the thickness of the alternatingly doped HTL increased device reliability. As a result, the lifetime of the QLED with a thick, alternatingly doped HTL was 48-fold higher than that of the QLED with a thin undoped HTL. This alternating doping strategy provides a new paradigm for increasing the stability of solution-based optoelectronic devices in addition to QLEDs.

키워드

alternating doping; hole-transport layer; lifetime; quantum-dot light-emitting diode; phosphomolybdic acid; HIGHLY EFFICIENT; CADMIUM; INP/ZNS
제목
Solution-Processed Thick Hole-Transport Layer for Reliable Quantum-Dot Light-Emitting Diodes Based on an Alternatingly Doped Structure
저자
Kim, Dong Hyun; Hwang, Jeong Ha; Seo, Eunyong; Lee, Kyungjae; Lim, Jaehoon; Lee, Donggu
DOI
10.1021/acsami.4c07049
발행일
2024-08
유형
Article
저널명
ACS Applied Materials & Interfaces
권
16
호
34
페이지
45139 ~ 45146