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用于白光发光二极管的全钙钛矿发射结构

All-Perovskite Emission Architecture for White Light-Emitting Diodes.

作者信息

Mao Jian, Lin Hong, Ye Fei, Qin Minchao, Burkhartsmeyer Jeffrey M, Zhang Hong, Lu Xinhui, Wong Kam Sing, Choy Wallace C H

机构信息

Department of Electrical and Electronic Engineering , The University of Hong Kong , Pokfulam Road, Hong Kong SAR , China.

Department of Physics , The Chinese University of Hong Kong , Shatin, Hong Kong SAR , China.

出版信息

ACS Nano. 2018 Oct 23;12(10):10486-10492. doi: 10.1021/acsnano.8b06196. Epub 2018 Oct 12.

Abstract

We demonstrate all-perovskite light-emitting diodes (PeLEDs) with white emission on the basis of simultaneously solving a couple of issues including the ion exchanges between different perovskites, solvent incompatibility in the solution process of stacking different perovskites and carrier transport layers, as well as the energy level matching between each layer in the whole device. The PeLEDs are built with a two-dimensional (CHCHCHNH)CsPbI perovskite that emits red light, CsPb(Br,Cl) quantum dots that emit a cyan color, and an interlayer composed of bis(1-phenyl-1H-benzo[ d]imidazole)phenylphosphine oxide (BIPO) and poly(4-butylphenyl-diphenyl-amine) (Poly-TPD). The interlayer is designed to realize desirable white electroluminescence by tuning the electron and hole transportation and distribution in-between multilayers. With this PeLED configuration, we achieve the typical white light with chromaticity coordinates of (0.32, 0.32) in Commission Internationale de L'Eclairage (CIE) 1931 color space diagram and steady CIE coordinates in a wide range of driving current densities (from 2.94 to 59.29 mA/cm). Consequently, our work, as the starting point for future research of all-perovskite white PeLEDs, will contribute to the future applications of PeLEDs in lighting and display. In addition, we believe that the proposed material and all-perovskite concept will leverage the design and development of more perovskite-based devices.

摘要

我们展示了基于同时解决几个问题的全钙钛矿发光二极管(PeLED),这些问题包括不同钙钛矿之间的离子交换、堆叠不同钙钛矿和载流子传输层的溶液过程中的溶剂不相容性,以及整个器件中各层之间的能级匹配。该PeLED由发射红光的二维(CHCHCHNH)CsPbI钙钛矿、发射青色的CsPb(Br,Cl)量子点以及由双(1-苯基-1H-苯并[d]咪唑)苯基氧化膦(BIPO)和聚(4-丁基苯基-二苯基-胺)(聚TPD)组成的中间层构建而成。中间层旨在通过调节多层之间的电子和空穴传输与分布来实现理想的白色电致发光。采用这种PeLED结构,我们在国际照明委员会(CIE)1931色空间图中实现了色度坐标为(0.32, 0.32)的典型白光,并且在很宽的驱动电流密度范围(从2.94到59.29 mA/cm)内保持稳定的CIE坐标。因此,我们的工作作为全钙钛矿白色PeLED未来研究的起点,将有助于PeLED在照明和显示领域的未来应用。此外,我们相信所提出的材料和全钙钛矿概念将推动更多基于钙钛矿的器件的设计和开发。

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