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Recent Progress in Photoresponsive Room-Temperature Phosphorescent Materials: From Mechanistic Insights to Functional Applications
by
Luo, Guiwen
, Zeng, Zao
, Chen, Yeqin
, Huang, Yu
in
Data encryption
/ Energy transfer
/ information encryption
/ Information storage
/ Ligands
/ photochromism
/ Polymers
/ radical ligands
/ Review
/ room-temperature phosphorescence
2025
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Recent Progress in Photoresponsive Room-Temperature Phosphorescent Materials: From Mechanistic Insights to Functional Applications
by
Luo, Guiwen
, Zeng, Zao
, Chen, Yeqin
, Huang, Yu
in
Data encryption
/ Energy transfer
/ information encryption
/ Information storage
/ Ligands
/ photochromism
/ Polymers
/ radical ligands
/ Review
/ room-temperature phosphorescence
2025
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Do you wish to request the book?
Recent Progress in Photoresponsive Room-Temperature Phosphorescent Materials: From Mechanistic Insights to Functional Applications
by
Luo, Guiwen
, Zeng, Zao
, Chen, Yeqin
, Huang, Yu
in
Data encryption
/ Energy transfer
/ information encryption
/ Information storage
/ Ligands
/ photochromism
/ Polymers
/ radical ligands
/ Review
/ room-temperature phosphorescence
2025
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Recent Progress in Photoresponsive Room-Temperature Phosphorescent Materials: From Mechanistic Insights to Functional Applications
Journal Article
Recent Progress in Photoresponsive Room-Temperature Phosphorescent Materials: From Mechanistic Insights to Functional Applications
2025
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Overview
Room-temperature phosphorescence (RTP) materials with photo-responsive properties have attracted increasing attention for applications in smart luminescent switches, optical logic control, and multidimensional information storage. Compared to other external stimuli, light offers the advantages of non-contact control, high spatiotemporal resolution, and excellent programmability, making it an ideal strategy for reversible and dynamic modulation of RTP. This review summarizes recent advances in light-triggered RTP systems coupled with photochromism. From a structural design perspective, we discuss strategies to integrate photochromic and RTP units within a single material system, covering photoisomerizable molecules, metal–organic complexes, organic–inorganic hybrids, and purely organic radicals. These materials demonstrate unique advantages in fields such as information encryption, bioimaging, and light-controlled upconversion. Finally, future design directions and challenges are proposed, aiming toward high-security, long-lifetime, and multi-channel collaborative luminescent systems.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
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