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Ultra-bright, efficient and stable perovskite light-emitting diodes

Cited 290 time in Web of Science Cited 322 time in Scopus
Authors

Kim, Joo Sung; Heo, Jung-Min; Park, Gyeong-Su; Woo, Seung-Je; Cho, Changsoon; Yun, Hyung Joong; Kim, Dong-Hyeok; Park, Jinwoo; Lee, Seung-Chul; Park, Sang-Hwan; Yoon, Eojin; Greenham, Neil C.; Lee, Tae-Woo

Issue Date
2022-11
Publisher
Nature Publishing Group
Citation
Nature, Vol.611 No.7937, pp.688-694
Abstract
Metal halide perovskites are attracting a lot of attention as next-generation lighte-mitting materials owing to their excellent emission properties, with narrow band emission(1-4). However, perovskite light-emitting diodes (PeLEDs), irrespective of their material type (polycrystals or nanocrystals), have not realized high luminance, high efficiency and long lifetime simultaneously, as they are influenced by intrinsic limitations related to the trade-off of properties between charge transport and confinement in each type of perovskite material(5-8). Here, we report an ultra-bright, efficient and stable PeLED made of core/shell perovskite nanocrystals with a size of approximately 10 nm, obtained using a simple in situ reaction of benzylphosphonic acid (BPA) additive with three-dimensional (3D) polycrystalline perovskite films, without separate synthesis processes. During the reaction, large 3D crystals are split into nanocrystals and the BPA surroundsthe nanocrystals, achieving strong carrier confinement. The BPA shell passivates the undercoordinated lead atoms by forming covalent bonds, and there by greatly reduces the trap density while maintaining good charge-transport properties for the 3D perovskites. We demonstrate simultaneously efficient, bright and stable PeLEDs that have a maximum brightness of approximately 470,000 cd m(-2), maximum external quantum efficiency of 28.9% (average = 25.2 +/- 1.6% over 40 devices), maximum current efficiency of 151 cd A(-1) and half-lifetime of 520 hat 1,000 cd m(-)(2) (estimated half-lifetime >30,000 h at 100 cd m(-2)). Our work sheds light on the possibility that PeLEDs can be commercialized in the future display industry.
ISSN
0028-0836
URI
https://hdl.handle.net/10371/189419
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