Solid-State Phosphorescence-to-Fluorescence Switching in a Cyclometalated Ir(III) Complex Containing an Acid-Labile Chromophoric Ancillary Ligand: Implication for Multimodal Security Printing

Authors
Whang, Dong RyeolYou, YoungminChae, Weon-SikHeo, JeongyunKim, SehoonPark, Soo Young
Issue Date
2012-11-06
Publisher
AMER CHEMICAL SOC
Citation
LANGMUIR, v.28, no.44, pp.15433 - 15437
Abstract
In this study, we have demonstrated the reconstruction of encrypted information by employing photoluminescence spectra and lifetimes of a phosphorescent Ir(III) complex (IrHBT). IrHBT was constructed on the basis of a heteroleptic structure comprising a fluorescent N boolean AND O ancillary ligand. From the viewpoint of information security, the transformation of the Ir(III) complex between phosphorescent and fluorescent states can be encoded with chemical/photoirradiation methods. Thin polymer films (poly(methylmethacrylate), PMMA) doped with IrHBT display long-lived emission typical of phosphorescence (lambda(max) = 586 nm, tau(obs) = 2.90 mu s). Meanwhile, exposure to HCl vapor switches the emission to fluorescence (lambda(max) = 514 nm, tau(obs) = 1.53 ns) with drastic changes in both the photoluminescence color and lifetime. Security printing on paper impregnated with IrHBT or on a PMMA film containing IrHBT and photoacid generator (triphenylsulfonium triflate) enables the bimodal readout of photoluminescence color and lifetime.
Keywords
INFINITE COORDINATION POLYMERS; INFINITE COORDINATION POLYMERS
ISSN
0743-7463
URI
https://pubs.kist.re.kr/handle/201004/128658
DOI
10.1021/la3032013
Appears in Collections:
KIST Article > 2012
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