Phosphorescence enhancement of pyridinium macrocycles by poly(vinylalcohol)

A phosphorescence enhancement of pyridinium macrocycle/monomer phosphors is realized with up to 14.7-fold prolonging of the phosphorescence lifetimes and visible afterglow by doping into a poly(vinylalcohol) (PVA) matrix. The abundant hydrogen-bonding interactions and electrostatic interactions betw...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2023-09, Vol.59 (75), p.11248-11251
Hauptverfasser: Zhang, Zhi-Yuan, Deng, Chun-Yun, Shen, Chen-Chen, Xu, Rong-Yao, Wang, Xi-Zhen, Wang, Yan-Hao, Ding, Bo, Li, Bin, Li, Jian, Li, Chunju
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Sprache:eng
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Zusammenfassung:A phosphorescence enhancement of pyridinium macrocycle/monomer phosphors is realized with up to 14.7-fold prolonging of the phosphorescence lifetimes and visible afterglow by doping into a poly(vinylalcohol) (PVA) matrix. The abundant hydrogen-bonding interactions and electrostatic interactions between the phosphors and the PVA suppressed the nonradiative decay processes, slowed down the radiative decay and nonradiative decay of triplet states, and therefore promoted the long-lived RTP. A phosphorescence enhancement of pyridinium macrocycles/monomers phosphors are realized with up to 14.7-fold prolonging of phosphorescence lifetimes and visible afterglow by doping into poly(vinylalcohol) (PVA) matrix.
ISSN:1359-7345
1364-548X
DOI:10.1039/d3cc03225f