| Literature DB >> 29894158 |
Congbiao Jiang1, Jianhua Zou1,2, Yu Liu1, Chen Song1, Zhiwei He1, Zhenji Zhong1, Jian Wang1, Hin-Lap Yip1, Junbiao Peng1, Yong Cao1.
Abstract
Solution-processed electroluminescent tandem white quantum-dot light-emitting diodes (TWQLEDs) have the advantages of being low-cost and high-efficiency and having a wide color gamut combined with color filters, making this a promising backlight technology for high-resolution displays. However, TWQLEDs are rarely reported due to the challenge of designing device structures and the deterioration of film morphology with component layers that can be deposited from solutions. Here, we report an interconnecting layer with the optical, electrical, and mechanical properties required for fully solution-processed TWQLED. The optimized TWQLEDs exhibit a state-of-the-art current efficiency as high as 60.4 cd/A and an extremely high external quantum efficiency of 27.3% at a luminance of 100 000 cd/m2. A high color gamut of 124% NTSC 1931 standard can be achieved when combined with commercial color filters. These results represent the highest performance for solution-processed WQLEDs, unlocking the great application potential of TWQLEDs as backlights for new-generation displays.Entities:
Keywords: backlight; high efficiency; interconnecting layer; light-emitting diodes; quantum dots
Year: 2018 PMID: 29894158 DOI: 10.1021/acsnano.8b02289
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881