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  4. Highly luminescent perovskite quantum dots for light-emitting devices: photopatternable perovskite quantum dot-polymer nanocomposites
 
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Highly luminescent perovskite quantum dots for light-emitting devices: photopatternable perovskite quantum dot-polymer nanocomposites

Journal
Journal of Materials Chemistry C
Journal Volume
10
Journal Issue
42
Date Issued
2022-10-11
Author(s)
Sung, Cheng Han
Huang, Shi Da
Kumar, Gautham
Lin, Wen Chi
CHIEN-CHUNG LIN  
Kuo, Hao Chung
Chen, Fang Chung
DOI
10.1039/d2tc01832b
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/633692
URL
https://api.elsevier.com/content/abstract/scopus_id/85141068808
Abstract
In this study we synthesize organic-inorganic hybrid perovskite quantum dots (PeQDs) having a high photoluminescence quantum yield (PLQY = 98%) for light-emitting applications. The luminescence peak of the FAPbBr3 (FA+: formamidinium) PeQDs in solution is located at 527 nm; its CIE 1931 color coordinates are (0.169, 0.760), very close to the BT.2020 standard (0.170, 0.797). After mixing the PeQDs with polydimethylsiloxane, the mixture behaves as a color-conversion layer (CCL) for quantum-dot light emitting diodes (LEDs), achieving a high power efficiency (129.4 lm W−1). Because PeQDs readily decompose in most polar solvents, we blend ours with polyvinylcinnamate (PVCN), which is readily soluble in toluene, to formulate photopatternable thin films. The resulting photopatternable perovskite quantum dot-polymer nanocomposites (PQD-PNCs) can be patterned using UV light to achieve feature sizes as small as 3.86 μm. The highest PLQY of the PQD-PNC film (47%) is greater than that of the neat QD film (40%), while the stability of the PQD-PNC is also better than that of the neat film, presumably because of the hydrophobic nature of PVCN. These results suggest the high potential of PQD-PNCs as effective CCLs for future micro-LEDs.
SDGs

[SDGs]SDG7

Type
journal article

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