Dynamic Polymer-Based Room Temperature Phosphorescent Thin Films.

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Bibliographic Details
Title: Dynamic Polymer-Based Room Temperature Phosphorescent Thin Films.
Authors: Shi, Jiabo1 (AUTHOR) shijiabo@sust.edu.cn, He, Jiahao1 (AUTHOR), Sheng, Li1 (AUTHOR), Wang, Liyao1 (AUTHOR), Shen, Kuangyu2 (AUTHOR), Sun, Luyi2 (AUTHOR) luyi.sun@uconn.edu
Source: Polymer Reviews. 2025, Vol. 65 Issue 4, p1101-1149. 49p.
Subjects: Thin films, Polymers, Phosphorescence, Translucency (Optics), Phosphors, Flexibility (Mechanics), Surface properties, Condensed matter
Abstract: Dynamic polymer-based room temperature phosphorescent (RTP) thin films have gained extensive attention owing to their captivating RTP characteristics, versatile film-forming capabilities, ease of processing, superior transparency, remarkable flexibility, and cost-effectiveness. The key to achieving effective dynamic polymer-based RTP thin films lies primarily in the selection of suitable polymers to serve as the protective matrix and the incorporation of well-matched RTP phosphors. Although numerous studies have explored various polymer-based RTP materials, comprehensive reviews specifically focusing on polymer-based RTP thin films with dynamic properties and associated applications remain limited. This review examines recent advancements in the field, with a focus on construction strategies, interaction mechanisms, and their influence on film properties. It highlights the benefits of the polymer matrix and associated fabrication techniques, and the interactions between phosphors and the matrix. Finally, the challenges and prospects for dynamic polymer-based RTP thin films in diverse applications are discussed. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:Dynamic polymer-based room temperature phosphorescent (RTP) thin films have gained extensive attention owing to their captivating RTP characteristics, versatile film-forming capabilities, ease of processing, superior transparency, remarkable flexibility, and cost-effectiveness. The key to achieving effective dynamic polymer-based RTP thin films lies primarily in the selection of suitable polymers to serve as the protective matrix and the incorporation of well-matched RTP phosphors. Although numerous studies have explored various polymer-based RTP materials, comprehensive reviews specifically focusing on polymer-based RTP thin films with dynamic properties and associated applications remain limited. This review examines recent advancements in the field, with a focus on construction strategies, interaction mechanisms, and their influence on film properties. It highlights the benefits of the polymer matrix and associated fabrication techniques, and the interactions between phosphors and the matrix. Finally, the challenges and prospects for dynamic polymer-based RTP thin films in diverse applications are discussed. [ABSTRACT FROM AUTHOR]
ISSN:15583724
DOI:10.1080/15583724.2025.2550247