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基于具有宽带发射自陷激子的三元卤化铜的稳定黄色发光器件。

Stable Yellow Light-Emitting Devices Based on Ternary Copper Halides with Broadband Emissive Self-Trapped Excitons.

作者信息

Ma Zhuangzhuang, Shi Zhifeng, Qin ChaoChao, Cui Minghuan, Yang Dongwen, Wang Xinjiang, Wang Lintao, Ji Xinzhen, Chen Xu, Sun Junlu, Wu Di, Zhang Yu, Li Xin Jian, Zhang Lijun, Shan Chongxin

机构信息

Key Laboratory of Materials Physics of Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Daxue Road 75, Zhengzhou 450052, China.

Henan Key Laboratory of Infrared Materials & Spectrum Measures and Applications, Henan Normal University, Jianshe Road 46, Xinxiang 453007, China.

出版信息

ACS Nano. 2020 Apr 28;14(4):4475-4486. doi: 10.1021/acsnano.9b10148. Epub 2020 Mar 17.

Abstract

Great successes have been achieved in developing perovskite light-emitting devices (LEDs) with blue, green, red, and near-infrared emissions. However, as key optoelectronic devices, yellow-colored perovskite LEDs remain challenging, mainly due to the inevitable halide separation in mixed halide perovskites under high bias, causing undesired color change of devices. In addition to this color-missing problem, the intrinsic toxicity and poor stability of conventional lead-halide perovskites also restrict their practical applications. We herein report the fabrication of stable yellow LEDs based on a ternary copper halide CsCuI, addressing the color instability and toxicity issues facing current perovskite yellow LED's compromise. Joint experiment-theory characterizations indicate that the yellow electroluminescence originates from the broadband emission of self-trapped excitons centered at 550 nm as well as the comparable and reasonably low carrier effective masses favorable for charge transport. With a maximum luminance of 47.5 cd/m and an external quantum efficiency of 0.17%, the fabricated yellow LEDs exhibit a long half-lifetime of 5.2 h at 25 °C and still function properly at 60 °C with a half-lifetime of 2.2 h, which benefits from the superior resistance of CsCuI to heat, moisture, and oxidation in ambient environmental conditions. The results obtained promise the copper halides with broadband light emission as an environment-friendly and stable yellow emitter for the LEDs compatible with practical applications.

摘要

在开发具有蓝色、绿色、红色和近红外发射的钙钛矿发光器件(LED)方面已经取得了巨大成功。然而,作为关键的光电器件,黄色钙钛矿LED仍然具有挑战性,主要是因为在高偏压下混合卤化物钙钛矿中不可避免地会发生卤化物分离,导致器件出现不希望的颜色变化。除了这种颜色缺失问题外,传统铅卤化物钙钛矿的固有毒性和较差的稳定性也限制了它们的实际应用。我们在此报告基于三元卤化铜CsCuI制备稳定的黄色LED,解决了当前钙钛矿黄色LED面临的颜色不稳定性和毒性问题。联合实验-理论表征表明,黄色电致发光源于以550nm为中心的自陷激子的宽带发射,以及有利于电荷传输的相当且合理较低的载流子有效质量。所制备的黄色LED最大亮度为47.5 cd/m²,外量子效率为0.17%,在25°C下具有5.2小时的长半衰期,在60°C下仍能正常工作,半衰期为2.2小时,这得益于CsCuI在环境条件下对热、湿气和氧化的优异抗性。所获得的结果表明,具有宽带发光的卤化铜有望成为一种与实际应用兼容的用于LED的环保且稳定的黄色发光体。

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