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High-Throughput Combinatorial Optimizations of Perovskite Light-Emitting Diodes Based on All-Vacuum Deposition

机译:基于全真空沉积的钙钛矿发光二极管高通量组合优化

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Light-emitting diodes (LEDs) based on lead halide perovskites demonstrate outstanding optoelectronic properties and are strong competitors for display and lighting applications. While previous halide perovskite LEDs are mainly produced via solution processing, here an all-vacuum processing method is employed to construct CsPbBr3 LEDs because vacuum processing exhibits high reliability and easy integration with existing OLED facilities for mass production. The high-throughput combinatorial strategies are further adopted to study perovskite composition, annealing temperature, and functional layer thickness, thus significantly speeding up the optimization process. The best rigid device shows a current efficiency (CE) of 4.8 cd A(-1) (EQE of 1.45%) at 2358 cd m(-2), and best flexible device shows a CE of 4.16 cd A(-1) (EQE of 1.37%) at 2012 cd m(-2) with good bending tolerance. Moreover, by choosing NiOx as the hole-injection layer, the CE is improved to 10.15 cd A(-1) and EQE is improved to a record of 3.26% for perovskite LEDs produced by vacuum deposition. The time efficient combinatorial approaches can also be applied to optimize other perovskite LEDs.
机译:基于卤化钙钛矿的发光二极管(LED)具有出色的光电性能,是显示和照明应用的强大竞争者。尽管以前的卤化物钙钛矿LED主要通过溶液加工生产,但由于真空加工显示出高可靠性并易于与现有OLED设备集成以进行大规模生产,因此此处采用全真空加工方法来构造CsPbBr3 LED。进一步采用高通量组合策略来研究钙钛矿成分,退火温度和功能层厚度,从而显着加快了优化过程。最好的刚性设备在2358 cd m(-2)时显示的电流效率(CE)为4.8 cd A(-1)(EQE为1.45%),而最好的柔性设备显示的CE为4.16 cd A(-1)( 2012年cd m(-2)时的EQE为1.37%),并且具有良好的弯曲公差。此外,通过选择NiOx作为空穴注入层,通过真空沉积生产的钙钛矿LED的CE改善到10.15 cd A(-1),EQE改善到3.26%的记录。时间高效的组合方法也可以应用于优化其他钙钛矿LED。

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