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Downscaling micro- and nano-perovskite LEDs

Accepted version
Peer-reviewed

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Abstract

Many technological breakthroughs in electronics and photonics were made possible by downscaling – the process of making elementary devices smaller in size1-5. The downsizing of light-emitting diodes (LEDs) based on III-V semiconductors led to micro-LEDs5-12, an ‘ultimate technology’ for displays. However, micro-LEDs are costly to produce and they exhibit severe efficiency losses when the pixel sizes reduce to ~10 μm or below, hindering their potential in commercial applications. Here, we show the downscaling of an emerging class of LEDs based on perovskite semiconductors to below the conventional size limits. Micro- and nano-perovskite LEDs (micro/nano-PeLEDs) with characteristic pixel lengths from hundreds of μm down to ~90 nm are demonstrated, through a localised contact fabrication scheme that prevents nonradiative losses at the pixel boundaries. For our near-infrared and green micro-PeLEDs, average EQEs are maintained at around 20% across a wide range of pixel lengths (650 to 3.5 μm), exhibiting minimum performance reduction upon downsizing. Our nano-PeLEDs with characteristic pixel lengths of down to ~90 nm represent the smallest LEDs reported, enabling a record-high pixel density of 127,000 pixels per inch (PPI) amongst all classes of LED arrays. Our demonstration showcases the strength of micro/nano-PeLEDs as a next-generation light source technology with unprecedented compactness and scalability.

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Journal Title

Nature

Conference Name

Journal ISSN

0028-0836
1476-4687

Volume Title

Publisher

Nature Research

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Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Royal Society (UF150033)
European Research Council (756962)
National Key Research and Development Program of China (2022YFA1204800), National Natural Science Foundation of China (NSFC) (62274144, 62005243), Zhejiang Provincial Government, Natural Science Foundation of Zhejiang Province (LR21F050003), Fundamental Research Funds for the Central Universities, and Zhejiang University Education Foundation Global Partnership Fund, Royal Society, Tata Group (UF150033), European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme (HYPERION, grant agreement number 756962)