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Förster energy transfer from poly(arylene–ethynylene)s to an erbium–porphyrin complex
Authors:R. Pizzoferrato    L. Lagonigro    T. Ziller    A. Di Carlo    R. Paolesse    F. Mandoj    A. Ricci  C. Lo Sterzo
Affiliation:

a Facoltà di Ingegneria, INFM-Dipartimento di Ingegneria Meccanica, Università di Tor Vergata, Via di Tor Vergata 110, 00133, Rome, Italy

b Facoltà di Ingegneria, INFM-Dipartimento di Ingegneria Elettronica, Università di Tor Vergata, Via di Tor Vergata 110, 00133, Rome, Italy

c Dipartimento di Scienze e Tecnologie Chimiche, Università di Tor Vergata, Via della Ricerca Scientifica, 00133, Rome, Italy

d Istituto CNR di Metodologie Chimiche (IMC-CNR), Sezione Meccanismi di Reazione Dipartimento di Chimica, Box 34-Roma 62, Università “La Sapienza”, P.le A. Moro 5, 00185, Rome, Italy

e Dipartimento di Scienze degli Alimenti, Facoltà di Agraria, Università degli Studi di Teramo Via Spagna 1, 64023-Mosciano S. Angelo, Teramo, Italy

Abstract:We study the infrared emission at 1.54 μm of an organolanthanide complex, Er(III)-tetraphenylporphyrin [Er(TPP)acac], both as a result of direct optical excitation and via energy transfer from host π-conjugate polymers of type poly(arylene–ethynylene) [PAE]. In the first case, the emission of the neat complex is characterized in inert transparent materials and a value of the quantum yield at 1.54 μm φIR=4×10−4 is measured. Then, fluorescence resonance transfer is investigated in blends of Er(TPP)acac with PAEs by monitoring the quenching of the polymer fluorescence along with the enhancement of both the visible emission of the ligand and the near-infrared band of Er3+. These different procedures allow a detailed analysis of the transfer efficiency within a specific implementation of the Förster model for polymeric donors. The experimental values of the critical radius R0, ranging from 1.3 to 2.5 nm for the different blends, are in good agreement with theory for a wide interval of the physical and spectroscopic parameters. This suggests that other mechanisms for excitation transfer do not play a significant role in these materials.
Keywords:Author Keywords: Photoluminescence   Er(III)-tetraphenylporphyrin complex   Förster transfer
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