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Large cation ethylammonium incorporated perovskite for efficient and spectra stable blue light-emitting diodes

Zema Chu, Yang Zhao, Fei Ma, Cai-Xin Zhang, Huixiong Deng, Feng Gao, Qiufeng Ye, Junhua Meng, Zhigang Yin, Xingwang Zhang () and Jingbi You ()
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Zema Chu: Chinese Academy of Sciences
Yang Zhao: Chinese Academy of Sciences
Fei Ma: Chinese Academy of Sciences
Cai-Xin Zhang: Chinese Academy of Sciences
Huixiong Deng: University of Chinese Academy of Sciences
Feng Gao: Chinese Academy of Sciences
Qiufeng Ye: Chinese Academy of Sciences
Junhua Meng: Chinese Academy of Sciences
Zhigang Yin: Chinese Academy of Sciences
Xingwang Zhang: Chinese Academy of Sciences
Jingbi You: Chinese Academy of Sciences

Nature Communications, 2020, vol. 11, issue 1, 1-8

Abstract: Abstract Perovskite light-emitting diodes (PeLEDs) have showed significant progress in recent years; the external quantum efficiency (EQE) of electroluminescence in green and red regions has exceeded 20%, but the efficiency in blue lags far behind. Here, a large cation CH3CH2NH2+ is added in PEA2(CsPbBr3)2PbBr4 perovskite to decrease the Pb–Br orbit coupling and increase the bandgap for blue emission. X-ray diffraction and nuclear magnetic resonance results confirmed that the EA has successfully replaced Cs+ cations to form PEA2(Cs1-xEAxPbBr3)2PbBr4. This method modulates the photoluminescence from the green region (508 nm) into blue (466 nm), and over 70% photoluminescence quantum yield in blue is obtained. In addition, the emission spectra is stable under light and thermal stress. With configuration of PeLEDs with 60% EABr, as high as 12.1% EQE of sky-blue electroluminescence located at 488 nm has been demonstrated, which will pave the way for the full color display for the PeLEDs.

Date: 2020
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DOI: 10.1038/s41467-020-17943-6

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