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Improved photoelectric performance of all-inorganic perovskite through different additives for green light-emitting diodes

DOI:10.1039/c9ra05053a 期刊:RSC Advances 出版年份:2019 更新时间:2025-09-16 10:30:52
摘要: The exceptional optical and electronic properties of all-inorganic cesium lead bromide (CsPbBr3) perovskite make it an ideal new optoelectronic material, but low surface coverage limits its performance. The morphological characteristics of thin films have a great influence on the performance of perovskite light emitting diodes, especially at low coverage, and an inhomogeneous surface will lead to current leakage. To tackle this problem, the widespread adoption of composite layers including polymers poly(ethylene oxide) (PEO) and organic insulating poly(vinylpyrrolidone) (PVP) and all-inorganic perovskites is an effective way to increase the surface coverage and uniformity of perovskite films and improve the performance of perovskite light emitting devices. In our work, the perovskite thin films are investigated by using PEO and PVP dual additives, and the optimized CsPbBr3–PEO–PVP LED with maximum luminance, current efficiency, and external quantum efficiency of 2353 cd m?2 (at 7.2 V), 2.14 cd A?1 (at 6.5 V) and 0.85% (at 6.5 V) was obtained. This work indicates that the method of using additives is not only the key to enhancing the quality of perovskite thin film, but also the key to achieving a higher performance perovskite LED.
作者: Xianqi Yang,Huaimin Gu,Nana Liu,Zebing Liao,Wenzhu Xu,Yuan Tan
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To improve the photoelectric performance of all-inorganic perovskite through different additives for green light-emitting diodes by enhancing the surface coverage and uniformity of perovskite films.

The introduction of PEO and PVP dual additives significantly improves the quality of perovskite thin films, leading to enhanced performance of perovskite LEDs. The optimized CsPbBr3–PEO–PVP LED achieved high luminance, current efficiency, and external quantum efficiency, demonstrating the potential of this approach for future thin film LED development.

The study acknowledges the challenges in completely eliminating pinholes and incompleteness in thin films, especially for solution-based processing technology. The operational stabilities of devices with additives are improved but further optimization is needed for higher performance and stability.

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