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用于蓝光发光二极管的3D和2D金属卤化物钙钛矿

3D and 2D Metal Halide Perovskites for Blue Light-Emitting Diodes.

作者信息

Park Min-Ho

机构信息

Department of Organic Materials and Fiber Engineering, Integrative Institute of Basic Science, Soongsil University, 369 Sangdo-Ro, Dongjak-Gu, Seoul 06978, Korea.

出版信息

Materials (Basel). 2022 Jun 29;15(13):4571. doi: 10.3390/ma15134571.

Abstract

Metal halide perovskites (MHPs) are emerging next-generation light emitters that have attracted attention in academia and industry owing to their low material cost, simple synthesis, and wide color gamut. Efficient strategies for MHP modification are being actively studied to attain high performance demonstrated by commercial light-emitting diodes (LEDs) based on organic emitters. Active studies have overcome the limitations of the external quantum efficiencies (EQEs) of green and red MHP LEDs (PeLEDs); therefore, the EQEs of PeLEDs (red: 21.3% at 649 nm; green: 23.4% at 530 nm) have nearly reached the theoretical limit for the light outcoupling of single-structured planar LEDs. However, the EQEs of blue PeLEDs (12.1% at 488 nm and 1.12% at 445 nm) are still lower than approximately half of those of green and red PeLEDs. To commercialize PeLEDs for future full-color displays, the EQEs of blue MHP emitters should be improved by approximately 2 times for sky-blue and more than 20 times for deep-blue MHP emitters to attain values comparable to the EQEs of red and green PeLEDs. Therefore, based on the reported effective approaches for the preparation of blue PeLEDs, a synergistic strategy for boosting the EQE of blue PeLEDs can be devised for commercialization in future full-color displays. This review covers efficient strategies for improving blue PeLEDs using fundamental approaches of material engineering, including compositional or dimensional engineering, thereby providing inspiration for researchers.

摘要

金属卤化物钙钛矿(MHPs)是新兴的下一代发光体,因其材料成本低、合成简单且色域广而在学术界和工业界受到关注。目前正在积极研究高效的MHP修饰策略,以实现基于有机发光体的商用发光二极管(LED)所展示的高性能。积极的研究已经克服了绿色和红色MHP发光二极管(PeLEDs)的外量子效率(EQEs)的限制;因此,PeLEDs的EQEs(红色:在649nm处为21.3%;绿色:在530nm处为23.4%)几乎达到了单结构平面LED光输出耦合的理论极限。然而,蓝色PeLEDs的EQEs(在488nm处为12.1%,在445nm处为1.12%)仍低于绿色和红色PeLEDs的大约一半。为了使PeLEDs用于未来的全彩色显示器商业化,蓝色MHP发光体的EQEs对于天蓝色应提高约2倍,对于深蓝色MHP发光体应提高超过20倍,以达到与红色和绿色PeLEDs的EQEs相当的值。因此,基于已报道的制备蓝色PeLEDs的有效方法,可以设计一种协同策略来提高蓝色PeLEDs的EQE,以便在未来的全彩色显示器中商业化。这篇综述涵盖了使用材料工程的基本方法来改善蓝色PeLEDs的有效策略,包括成分或维度工程,从而为研究人员提供灵感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d80/9267590/cd98fa836c9c/materials-15-04571-g001.jpg

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