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Organic polaritonic light-emitting diodes with high luminance and color purity toward laser displays. | LitMetric

Organic polaritonic light-emitting diodes with high luminance and color purity toward laser displays.

Light Sci Appl

Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry, Capital Normal University, 100048, Beijing, China.

Published: August 2024

AI Article Synopsis

  • Development of a novel OLED using organic single crystals enables enhanced optical performance in display technologies.
  • By coupling the organic exciton state to an optical microcavity, the researchers achieved polariton electroluminescent emission with high luminance, narrow-band emission, and high color purity.
  • The work suggests potential for electrically pumped polariton lasers, providing a strategic approach for future advancements in organic light-emitting devices.

Article Abstract

Achieving high-luminescence organic light-emitting devices (OLEDs) with narrowband emission and high color purity is important in various optoelectronic fields. Laser displays exhibit outstanding advantages in next-generation display technologies owing to their ultimate visual experience, but this remains a great challenge. Here, we develop a novel OLED based organic single crystals. By strongly coupling the organic exciton state to an optical microcavity, we obtain polariton electroluminescent (EL) emission from the polariton OLEDs (OPLEDs) with high luminance, narrow-band emission, high color purity, high polarization as well as excellent optically pumped polariton laser. Further, we evaluate the potential for electrically pumped polariton laser through theoretical analysis and provide possible solutions. This work provides a powerful strategy with a material-device combination that paves the way for electrically driven organic single-crystal-based polariton luminescent devices and possibly lasers.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11327354PMC
http://dx.doi.org/10.1038/s41377-024-01531-0DOI Listing

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