Perovskite energy funnels for efficient light-emitting diodes

被引:0
|
作者
Mingjian Yuan
Li Na Quan
Riccardo Comin
Grant Walters
Randy Sabatini
Oleksandr Voznyy
Sjoerd Hoogland
Yongbiao Zhao
Eric M. Beauregard
Pongsakorn Kanjanaboos
Zhenghong Lu
Dong Ha Kim
Edward H. Sargent
机构
[1] University of Toronto,Department of Electrical and Computer Engineering
[2] 35 St George Street,Department of Chemistry and Nano Science
[3] Ewha Womans University,Department of Materials Science and Engineering
[4] 52 Ewhayeodae-gil,undefined
[5] University of Toronto,undefined
[6] 184 College Street,undefined
[7] Present address: Materials Science and Engineering,undefined
[8] Faculty of Science,undefined
[9] Mahidol University,undefined
[10] 272 Rama 6 Road,undefined
[11] Ratchathewi District,undefined
[12] Bangkok 10400,undefined
[13] Thailand,undefined
来源
Nature Nanotechnology | 2016年 / 11卷
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摘要
Organometal halide perovskites exhibit large bulk crystal domain sizes, rare traps, excellent mobilities and carriers that are free at room temperature—properties that support their excellent performance in charge-separating devices. In devices that rely on the forward injection of electrons and holes, such as light-emitting diodes (LEDs), excellent mobilities contribute to the efficient capture of non-equilibrium charge carriers by rare non-radiative centres. Moreover, the lack of bound excitons weakens the competition of desired radiative (over undesired non-radiative) recombination. Here we report a perovskite mixed material comprising a series of differently quantum-size-tuned grains that funnels photoexcitations to the lowest-bandgap light-emitter in the mixture. The materials function as charge carrier concentrators, ensuring that radiative recombination successfully outcompetes trapping and hence non-radiative recombination. We use the new material to build devices that exhibit an external quantum efficiency (EQE) of 8.8% and a radiance of 80 W sr−1 m−2. These represent the brightest and most efficient solution-processed near-infrared LEDs to date.
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页码:872 / 877
页数:5
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