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用于高稳定性发光二极管的无铅有机钙钛矿混合量子阱

Lead-Free Organic-Perovskite Hybrid Quantum Wells for Highly Stable Light-Emitting Diodes.

作者信息

Wang Kang, Jin Linrui, Gao Yao, Liang Aihui, Finkenauer Blake P, Zhao Wenchao, Wei Zitang, Zhu Chenhui, Guo Tzung-Fang, Huang Libai, Dou Letian

机构信息

Davidson School of Chemical Engineering, Purdue University, West Lafayette, Indiana 47907, United States.

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.

出版信息

ACS Nano. 2021 Apr 27;15(4):6316-6325. doi: 10.1021/acsnano.1c00872. Epub 2021 Mar 12.

Abstract

Two-dimensional perovskites that could be regarded as natural organic-inorganic hybrid quantum wells (HQWs) are promising for light-emitting diode (LED) applications. High photoluminescence quantum efficiencies (approaching 80%) and extremely narrow emission bandwidth (less than 20 nm) have been demonstrated in their single crystals; however, a reliable electrically driven LED device has not been realized owing to inefficient charge injection and extremely poor stability. Furthermore, the use of toxic lead raises concerns. Here, we report Sn(II)-based organic-perovskite HQWs employing molecularly tailored organic semiconducting barrier layers for efficient and stable LEDs. Utilizing femtosecond transient absorption spectroscopy, we demonstrate the energy transfer from organic barrier to inorganic perovskite emitter occurs faster than the intramolecular charge transfer in the organic layer. Consequently, this process allows efficient conversion of lower-energy emission associated with the organic layer into higher-energy emission from the perovskite layer. This greatly broadened the candidate pool for the organic layer. Incorporating a bulky small bandgap organic barrier in the HQW, charge transport is enhanced and ion migration is greatly suppressed. We demonstrate a HQW-LED device with pure red emission, a maximum luminance of 3466 cd m, a peak external quantum efficiency up to 3.33%, and an operational stability of over 150 h, which are significantly better than previously reported lead-free perovskite LEDs.

摘要

二维钙钛矿可被视为天然的有机-无机混合量子阱(HQW),在发光二极管(LED)应用方面具有广阔前景。其单晶已展现出高光致发光量子效率(接近80%)和极窄的发射带宽(小于20纳米);然而,由于电荷注入效率低下和稳定性极差,尚未实现可靠的电驱动LED器件。此外,有毒铅的使用引发了人们的担忧。在此,我们报告了基于Sn(II)的有机钙钛矿HQW,采用分子定制的有机半导体势垒层来实现高效稳定的LED。利用飞秒瞬态吸收光谱,我们证明了从有机势垒到无机钙钛矿发射体的能量转移比有机层中的分子内电荷转移更快。因此,该过程能够将与有机层相关的低能发射高效转化为钙钛矿层的高能发射。这极大地拓宽了有机层的候选范围。在HQW中引入一个庞大的小带隙有机势垒,电荷传输得到增强,离子迁移受到极大抑制。我们展示了一种具有纯红色发射的HQW-LED器件,最大亮度为3466 cd m,峰值外量子效率高达3.33%,工作稳定性超过150小时,这些性能明显优于先前报道的无铅钙钛矿LED。

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