Advances in Colloidal Quantum Dot-Based Displays for QLEDs and Patterning Applications

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초록

Various display devices utilize colloidal quantum dots (QDs) for photoluminescent (PL) and electroluminescent (EL) applications owing to their exceptional optical properties, including sharp emission bandwidths, tunable emissions spectra, and photoluminescence quantum yields approaching unity. Since the commercialization of PL-based devices, researchers have shifted focus to the commercialization of EL-based devices and patterning processes. Over the past decade, the performance of EL devices has been dramatically enhanced through the meticulous optimization of the device architecture. In addition, solution-based QD patterning techniques have advanced, offering methods that minimize damage to the coated QDs while preserving their intrinsic properties effectively. Recent innovations include the development of ink formulations that improve the stability of QDs under ambient conditions and the use of photolithographic and soft lithographic techniques to achieve high-resolution patterning. This article reviews the recent advancements in various EL-based devices and solution-based methods for QD patterning, highlighting their potential to enable more complex, multi-color displays, and their implications for next-generation consumer electronics.

키워드

Colloidal quantum dots; Electroluminescence; Light emitting; Pattering; Printing diodes; LIGHT-EMITTING-DIODES; HALIDE PEROVSKITES CSPBX3; NANOCRYSTAL THIN-FILMS; HOLE TRANSPORT LAYERS; TURN-ON-VOLTAGE; HIGHLY-EFFICIENT; OPTICAL-PROPERTIES; LIGAND-EXCHANGE; ANION-EXCHANGE; CDSE
제목
Advances in Colloidal Quantum Dot-Based Displays for QLEDs and Patterning Applications
저자
Ali, Awais; Oh, Seongkeun; Kim, Woosik; Oh, Soong Ju
DOI
10.1007/s11814-024-00251-w
발행일
2024-08-17
유형
Review; Early Access
저널명
Korean Journal of Chemical Engineering
권
41
호
13
페이지
3545 ~ 3560