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用于颜色可调蓝光发光二极管的强量子限制钙钛矿纳米线阵列

Strongly Quantum-Confined Perovskite Nanowire Arrays for Color-Tunable Blue-Light-Emitting Diodes.

作者信息

Fu Yu, Poddar Swapnadeep, Ren Beitao, Xie Ying, Zhang Qianpeng, Zhang Daquan, Cao Bryan, Tang Yunqi, Ding Yucheng, Qiu Xiao, Shu Lei, Liao Jin-Feng, Kuang Dai-Bin, Fan Zhiyong

机构信息

Department of Electronic and Computer Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR 999077, China.

State Key Laboratory of Advanced Displays and Optoelectronics Technologies, HKUST, Clear Water Bay, Kowloon, Hong Kong SAR 999077, China.

出版信息

ACS Nano. 2022 May 24;16(5):8388-8398. doi: 10.1021/acsnano.2c02795. Epub 2022 May 6.

Abstract

Color tunability of perovskite light-emitting diodes (PeLEDs) by mixed halide compositional engineering is one of the primary intriguing characteristics of PeLEDs. However, mixed halide PeLEDs are often susceptible to color red-shifting caused by halide ion segregation. In this work, strongly quantum-confined perovskite nanowires (QPNWs) made of CsPbBr are grown in nanoporous anodic alumina templates using a closed space sublimation process. By tuning the pore size with atomic layer deposition, QPNWs with a diameter of 6.6 to 2.8 nm have been successfully obtained, with continuous tunable photoluminescence emission color from green (512 nm) to pure blue (467 nm). To better understand the photophysics of QPNWs, carrier dynamics and the benefit of alumina passivation are studied and discussed in detail. Eventually, PeLEDs using various diameters of CsPbBr QPNWs are successfully fabricated with cyan color (492 nm) PeLEDs, achieving a record high 7.1% external quantum efficiency (EQE) for all CsPbBr-based cyan color PeLEDs. Sky blue (481 nm) and pure blue (467 nm) PeLEDs have also been successfully demonstrated, respectively. The work here demonstrates a different approach to achieve quantum-confined one-dimensional perovskite structures and color-tunable PeLEDs, particularly blue PeLEDs.

摘要

通过混合卤化物成分工程实现钙钛矿发光二极管(PeLED)的颜色可调性是PeLED的主要有趣特性之一。然而,混合卤化物PeLED通常容易受到卤化物离子偏析导致的颜色红移影响。在这项工作中,采用封闭空间升华工艺在纳米多孔阳极氧化铝模板中生长由CsPbBr制成的强量子限制钙钛矿纳米线(QPNW)。通过原子层沉积调节孔径,成功获得了直径为6.6至2.8 nm的QPNW,其光致发光发射颜色从绿色(512 nm)到纯蓝色(467 nm)连续可调。为了更好地理解QPNW的光物理性质,详细研究和讨论了载流子动力学以及氧化铝钝化的益处。最终,成功制备了使用各种直径CsPbBr QPNW的PeLED,其中青色(492 nm)PeLED的外量子效率(EQE)达到创纪录的7.1%,在所有基于CsPbBr的青色PeLED中处于领先水平。还分别成功展示了天蓝色(481 nm)和纯蓝色(467 nm)的PeLED。这里的工作展示了一种实现量子限制一维钙钛矿结构和颜色可调PeLED,特别是蓝色PeLED的不同方法。

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