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Sergeant-and-Soldier Effect in an Organic Room-Temperature Phosphorescent Host-Guest System. | LitMetric

Sergeant-and-Soldier Effect in an Organic Room-Temperature Phosphorescent Host-Guest System.

Adv Mater

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Department of Chemical and Biological Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, 999077, P. R. China.

Published: December 2024

AI Article Synopsis

  • Host-guest systems improve organic room temperature phosphorescence (RTP), but understanding their interactions is challenging due to complexity and lack of visualization techniques.
  • A new RTP system was created by doping a guest molecule (TPP-4C-BI) into a host matrix (TPP-4C-Cz), resulting in ten times higher phosphorescence yields than using pure compounds.
  • The study discovered a "sergeant-and-soldier" effect where guest molecules influence host packing and identified a mechanism for energy transfer that enhances RTP efficiency, leading to better design strategies for phosphorescent materials.

Article Abstract

Host-guest systems have emerged as an efficient strategy for promoting organic room temperature phosphorescence (RTP). Despite the advantages of doping guest molecules into a host matrix, the complexity of these systems and the lack of techniques to visualize host-guest interactions at the molecular scale pose significant challenges in understanding the underlying mechanisms. Here, a novel host-guest RTP system is developed by incorporating low concentrations (1-10 mol%) of TPP-4C-BI (guest) into crystalline TPP-4C-Cz (host). Utilizing structural isomerism, the guest molecules are regularly incorporated into the host crystal lattice, resulting in phosphorescence quantum yields almost ten times higher than the pure compounds. The system enabled resolution of the molecular packing of the single crystal through X-ray diffraction, providing unprecedented visualization of host-guest interactions. A "sergeant-and-soldier" effect, where the minority dopant molecules (sergeants) significantly influence the packing arrangement of the host molecules (soldiers), enhances RTP is identified. Further analyses revealed that due to the host molecule's inefficient phosphorescence pathway, its long-lived dark triplets are channeled to the guest via triplet-triplet energy transfer (TTET), allowing the excited energy to radiatively decay more efficiently. These insights advance the understanding of RTP mechanisms and offer practical implications for designing high-efficiency phosphorescent materials.

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Source
http://dx.doi.org/10.1002/adma.202410739DOI Listing

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