商业化
量子点
发光二极管
工程物理
纳米技术
材料科学
光电子学
工程类
业务
营销
作者
Jaeyeop Lee,Hyeona Jo,Minseok Choi,Sangwook Park,Jiyoon Oh,Kyoungeun Lee,Yeyun Bae,Seunghyun Rhee,Jeongkyun Roh
标识
DOI:10.1002/smtd.202301224
摘要
Abstract Colloidal quantum dots (QDs) are widely regarded as advanced emissive materials with significant potential for display applications owing to their excellent optical properties such as high color purity, near‐unity photoluminescence quantum yield, and size‐tunable emission color. Building upon these attractive attributes, QDs have successfully garnered attention in the display market as down‐conversion luminophores and now venturing into the realm of self‐emissive displays, exemplified by QD light‐emitting diodes (QD‐LEDs). However, despite these advancements, there remains a relatively limited body of research on QD patterning technologies, which are crucial prerequisites for the successful commercialization of QD‐LEDs. Thus, in this review, an overview of the current status and prospects of QD patterning technologies to accelerate the commercialization of QD‐LEDs is provided. Within this review, a comprehensive investigation of three prevailing patterning methods: optical lithography, transfer printing, and inkjet printing are conducted. Furthermore, several exploratory QD patterning techniques that offer distinct advantages are introduced. This study not only paves the way for successful commercialization but also extends the potential application of QD‐LEDs into uncharted frontiers.
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