| Literature DB >> 31540013 |
Chih-Hao Lin1, Chieh-Yu Kang1, Akta Verma2, Tingzhu Wu3, Yung-Min Pai1, Tzu-Yu Chen1, Chun-Lin Tsai1, Ya-Zhu Yang4, S K Sharma2, Chin-Wei Sher1, Zhong Chen5, Po-Tseng Lee1, Shu-Ru Chung6, Hao-Chung Kuo7.
Abstract
We demonstrate excellent color quality of liquid-type white light-emitting diodes (WLEDs) using a combination of green light-emitting CsPbBr3 and red light-emitting CdSe/ZnS quantum dots (QDs). Previously, we reported red (CsPbBr1.2I1.8) and green (CsPbBr3) perovskite QDs (PQDs)-based WLEDs with high color gamut, which manifested fast anion exchange and stability issues. Herein, the replacement of red PQDs with CdSe/ZnS QDs has resolved the aforementioned problems effectively and improved both stability and efficiency. Further, the proposed liquid-type device possesses outstanding color gamut performance (132% of National Television System Committee and 99% of Rec. 2020). It also shows a high efficiency of 66 lm/W and an excellent long-term operation stability for over 1000 h.Entities:
Keywords: perovskite quantum dots; ultrawide color gamut display; white LED
Year: 2019 PMID: 31540013 PMCID: PMC6781062 DOI: 10.3390/nano9091314
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1Process flowchart of (a) hybrid-type and (b) liquid-type QD-based WLEDs.
Figure 2(a) UV-Vis absorption, PL emission spectrum, and (b) TEM images of CsPbBr3 green perovskite quantum dots (QDs). (c) UV-Vis absorption, PL emission spectrum, and (d) TEM images of red CdSe/ZnS QDs.
Figure 3(a) Electroluminescence (EL) spectrum of hybrid-type WLED and (b) color coordinates and color gamut of cold white LED on the CIE1931 chromaticity diagram.
Figure 4(a) EL spectrum of liquid-type WLED and (b) color coordinates and color gamut of cold white LED on the CIE1931 chromaticity diagram.
The performance comparison: red film PQD + green liquid PQD WLED (hybrid-type) vs. red CdSe/ZnS liquid QD + green PQD type WLED (liquid-type).
| Device Properties | Hybrid-Type WLED | Liquid-Type WLED |
|---|---|---|
| NTSC (%) | 122 | 132 |
| Rec. 2020 (%) | 91 | 99 |
| Luminous efficiency (lm/W) | 51 | 66 |
Figure 5(a) Efficiency of two fabricated structures at varying currents. (b) Hybrid-type and (c) liquid-type WLEDs in CIE 1931 chromaticity coordinates at varying currents.
Figure 6The emission spectra of (a) hybrid-type WLED and (b) liquid-type WLED under various operation times; (c) luminous efficiency versus the operation time from 0 h to 1000 h.
Figure 7Chromaticity coordinates shift of (a) hybrid-type WLED and (b) liquid-type WLED from 0 to 1000 h on CIE1931.
Figure 8Chromaticity coordinates shift of (a) hybrid-type WLED and (b) liquid-type WLED from 0 h to 1000 h on CIE1976.