Dual Emission of a Novel (P,N) Re-I Complex: A Computational and Experimental Study on [P,N-{(C6H5)(2)(C5H4N)P}Re(CO)(3)Br]
Author
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Pizarro, Nancy
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Duque, Mario
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Chamorro, Eduardo
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Nonell, Santi
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Manzur Saffie, Jorge
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Fuente Urrutia, Julio de la
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Günther Sapunar, Germán
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Cepeda Plaza, Marjorie
Author
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Vega, Andrés
Admission date
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2015-08-21T18:09:43Z
Available date
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2015-08-21T18:09:43Z
Publication date
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2015
Cita de ítem
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Journal of Physical Chemistry A 2015, 119, 3929−3935
en_US
Identifier
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DOI: 10.1021/jp512614w
Identifier
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https://repositorio.uchile.cl/handle/2250/133003
General note
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Artículo de publicación ISI
en_US
Abstract
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The spectroscopic, electrochemical, and photophysical properties of the new complex [P,N-{(C6H5)(2)(C5H4N)-P}Re(CO)(3)Br] are reported. The UV-vis spectrum in dichloromethane shows an absorption maximum centered at 315 rim and a shoulder at 350 nm. These absorption bands have been characterized to have MLCT character. Excitation at both wavelengths (maximum and shoulder) leads to an emission band centered at 550 nm. Cyclic voltammetry experiments show two ill-defined irreversible oxidation waves around +1.50 and 1.80 V that are assigned to Re-I/Re-II and Re-II/Re-III couples whereas an irreversible reduction signal centered at 1.80 V is :likewise assigned to a ligand reduction process. These results support the proposal of the MLCT nature of the states implied by the emission of the complex. The luminescent decay fits to a biexponential function, where the lifetimes and emission quantum yields are dependent on the solvent polarity. DFT calculations suggest that d pi -> pi*(pyridine) and d pi -> pi*(phenyl) excited states may account for the existence of two decay lifetimes.