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Enhanced Emission of Deep Ultraviolet Light-Emitting Diodes through Using Work Function Tunable Cu Nanowires as the Top Transparent Electrode. | LitMetric

AI Article Synopsis

  • Deep ultraviolet light-emitting diodes (DUV LEDs) are crucial for applications like sterilization and data storage but face challenges due to a lack of effective transparent electrodes.
  • Researchers created an innovative method using Cu@shell nanowires to adjust their electronic work function, allowing for high transparency and efficient contact with the p-AlGaN layer.
  • They successfully built transparent DUV LED chips that emitted light with good efficiency (3%) at a low voltage (6.4 V), offering a promising solution to improve optoelectronic devices across different wavelengths.

Article Abstract

Deep ultraviolet light-emitting diodes (DUV LEDs) (<280 nm) have been important light sources for broad applications in, e.g., sterilization, purification, and high-density storage. However, the lack of excellent transparent electrodes in the DUV region remains a challenging issue. Here, we demonstrate an architectural engineering scheme to flexibly tune the work function of Cu@shell nanowires (NWs) as top transparent electrodes in DUV LEDs. By fast encapsulation of shell metals on Cu NWs and a shift of electron binding energy, the electronic work function could be widely tailored down to 4.37 eV and up to 5.73 eV. It is revealed that the high work function of Cu@Ni and Cu@Pt NWs could overcome the interfacial barrier to p-AlGaN and achieve direct ohmic contact with high transparency (91%) in 200-400 nm. Completely transparent DUV LED chips are fabricated and successfully lighted with sharp top emission (wall-plug efficiency reaches 3%) under a turn-on voltage of 6.4 V. This architectural strategy is of importance in providing highly transparent ohmic electrodes for optoelectronic devices in broad wavelength regions.

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Source
http://dx.doi.org/10.1021/acs.jpclett.0c00653DOI Listing

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