材料科学
纳米尺度
共发射极
虚拟现实
纳米技术
增强现实
量子点
计算机科学
过程(计算)
新兴技术
人机交互
光电子学
操作系统
作者
Sun Jae Park,Changmin Keum,Huanyu Zhou,Tae‐Woo Lee,Wonhee Choe,Himchan Cho
标识
DOI:10.1002/admt.202201070
摘要
Abstract Augmented reality (AR) and virtual reality (VR) are emerging interactive technologies that realize the “metaverse,” leading to a totally new digital interactive experience in daily life in various aspects. In order to provide users with a more immersive experience, displays for AR/VR have rapidly evolved to achieve high resolutions and a large color gamut on small panels. Recently, nanoscale light emitters such as quantum dots (QDs) and metal halide perovskites (MHPs) with high photoluminescence quantum efficiency and color purity levels have garnered much attention as color conversion materials in AR/VR displays. However, the low material stability and the absence of a high‐resolution patterning process that does not impair the optical properties of nanoscale emitters act as obstacles preventing the realization of high‐resolution AR/VR displays. Herein, the state‐of‐the‐art technologies constituting current AR/VR devices are reviewed from an industrial point of view and the recent progress in QD and MHP emitter technologies are discussed, including their basic structural properties, synthesis strategies to enhance the stability, advanced patterning technologies, down‐conversion and light‐emitting diode applications. Based on the review, the authors’ perspective on future research directions of nanoscale emitters for next‐generation AR/VR displays is presented.
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