Return
Stable and efficient quantum-dot light-emitting diodes based on solution-processed multilayer structures
DOI:10.1038/NPHOTON.2011.171.png)
Abstract
En 中文
Multilayer, colloidal quantum-dot based light-emitting diodes that exhibit high brightness, solution processability, colour tunability and narrow emission bandwidth are reported. These devices consist of a quantum-dot emissive layer sandwiched between an organic hole transport layer and an electron transport layer of ZnO nanoparticles, all of which are deposited using a solution process. The devices have maximum luminance and power efficiency values of 4,200 cd m(-2) and 0.17 lm W-1 for blue emission, 68,000 cd m(-2) and 8.2 lm W-1 for green, and 31,000 cd m(-2) and 3.8 lm W-1 for orange-red. Moreover, with the incorporation of the ZnO nanoparticles, these devices exhibit high environmental stability, and the unencapsulated devices have operating lifetimes exceeding 250 h in low vacuum with an initial brightness of 600 cd m(-2).
Keywords:
DEVICES
ELECTROLUMINESCENCE
NANOCRYSTALS
MONOLAYERS
INTERFACE
POLYMER
BRIGHT
AI Summary
Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.
Journal
IF:
32.9
Papers:
4.3K
Citations:
6.1W
Organization
Cited Papers
Highly Efficient Green-Light-Emitting Diodes Based on CdSe@ZnS Quantum Dots with a Chemical-Composition Gradient
ADVANCED MATERIALS
IF26.8
Efficient hybrid solar cells from zinc oxide nanoparticles and a conjugated polymer
ADVANCED MATERIALS
IF26.8
Colloidal quantum-dot light-emitting diodes with metal-oxide charge transport layers
NATURE PHOTONICS
IF32.9
Bright and color-saturated emission from blue light-emitting diodes based on solution-processed colloidal nanocrystal quantum dots
NANO LETTERS
IF9.1


