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Published on: February 27, 2019
Color-Tunable Circularly Polarized Room-Temperature Phosphorescence by Intermolecular Phosphorescence Resonance
Chao Liu1, Liwei Liu1, Yizhou Song1
1State Key Laboratory of Analytical Chemistry for Life Sciences, Engineering Research Center of Photoresist Materials, Ministry of Education, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.
None:
Circularly polarized room-temperature phosphorescent (CP-RTP) materials have been attracting great attention due to their potential applications in anticounterfeiting. In this study, we designed and synthesized a host-guest copolymer (PBXT) with strong phosphorescence emission and a long emission lifetime using a self-doping strategy. The co-assembled liquid crystal polymer networks (LCPNs)x-(RI/SI)y doped with PBXT demonstrated a stronger RTP emission and longer lifetime (τ = 148 ms). Among them, (LCPNs)0.91-(RI)0.09 showed strong CP-RTP signals (|gRTP| = 0.071) through chiral supramolecular co-assembly. By dropping Nile Red (NR) into (LCPNs)0.91-(RI/SI)0.09, the resulting [(LCPNs)0.91-(RI/SI)0.09]0.9925-(NR)0.0075 emitted intense red circularly polarized luminescence (CPL) of NR dye (λem = 636 nm and |gem| = 0.073) with a long lifetime (τ = 26 ms) under the regulation of an intermolecular phosphorescence resonance energy transfer (PRET) mechanism. Additionally, [(LCPNs)x-(RI/SI)y]m-(NR)n has been explored for applications in time-varying information encryption and quadruplex anticounterfeiting information encryption through the PRET progress.
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