DOI: 10.1002/adma.202306834 ISSN:

Circularly Polarized Organic Ultralong Room‐Temperature Phosphorescence with A High Dissymmetry Factor in Chiral Helical Superstructures

Jiao Liu, Zhen‐Peng Song, Juan Wei, Jun‐Jie Wu, Meng‐Zhu Wang, Jian‐Gang Li, Yun Ma, Bing‐Xiang Li, Yan‐Qing Lu, Qiang Zhao
  • Mechanical Engineering
  • Mechanics of Materials
  • General Materials Science

Abstract

Long‐lived room‐temperature phosphorescence (RTP) of organic materials holds a significant potential for optical information. Circularly polarized organic ultralong room‐temperature phosphorescence (CP‐OURTP) with extremely high dissymmetry factor (glum) values is even highly demanded and considerably challenging. Here, we introduce an effective strategy to realize CP‐OURTP with an emission decay time of 735 ms and a glum value up to 1.49, which exceeds two orders of magnitude larger than previous records, through a system composed of RTP polymers and chiral helical superstructures. The system exhibits excellent stability under multiple cycles of photoirradiation and thermal treatment, and is further employed for information encryption based on optical multiplexing. The results are anticipated to lay the foundation for the development of CP‐OURTP materials in advanced photonic applications.

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