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Intramolecular energy transfer in compounds with two 1-pyrenoate groups separated by methylene spacers
Authors:Julio Bravo  Francisco Mendicuti  Enrique Saiz  Wayne L Mattice
Institution:(1) Departamento de Ingeniería Industrial, Universidad Carlos III de Madrid, 28911 Leganés, Spain;(2) Departamento de Química Física, Universidad de Alcalá, Alcalá de Henares, Madrid, Spain;(3) Institute of Polymer Science, The University of Akron, 44325-3909 Akron, Ohio
Abstract:Steady-state fluorescence anisotropy (r) and fluorescence lifetime (tau) measurements have been used to study the efficiency of nonradiative singlet energy transfer as a function of alkane size in 1-pyrenecarboxylic acid alkanediyl esters (as a function ofm in Py-COO-(CH2) m -OOC-Py, where Py denotes pyrene substituted in the 1-position, andm=2–6). Experiments were performed in media of different viscosity, eegr, obtained by changing the temperature (from –20 to 40°C) of dilute solutions in ethylene glycol and by examination of the compounds in a solid matrix of poly(methyl methacrylate) (PMMA) at ambient temperature. The Py-COO-(CH2)m-OOC-Py exhibit intramolecular excimer emission in ethylene glycol at these temperatures, but the intensity of this emission is much lower than when these compounds are placed in common solvents of lower eegr. The values of tau indicate that excitation hopping or intramolecular energy transfer takes place between the chromophores attached to the ends of the alkane bridges. Values ofr obtained by the extrapolationsT/eegrrarr0 ortauT/eegrrarr0 in ethylene glycol, as well as the values obtained in the rigid matrix of PMMA, show very little dependence onm. A theoretical conformational analysis, using the rotational isomeric state (RIS) model, was also performed. The combination of the experimental results forr in the media of high eegr with the theoretical (RIS) analysis produces an estimated value of 21 ±2 Å for the Förster radius in Py-COO-(CH2)m-OOC-Py.
Keywords:Intramolecular energy transfer  1-pyrenoate  methylene spacers  fluorescence anisotropy  fluorescence lifetime
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