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Size and branching effects on the fluorescence of benzylic dendrimers possessing one apigenin fluorophore at the core
Authors:Petr Vin&scaron  ,Martina Vermachová  ,Pavel Dra&scaron  ar,Melisa del Barrio,Carmen Jarne,Vicente L. Cebolla,Abel de Có  zar,Ronen Zangi,Fernando P. Cossí  o
Affiliation:1. Institute of Chemical Technology, Prague, Technická 5, 16628 Praha, Dejvice, Czech Republic;2. Donostia International Physics Center (DIPC), P.O. Box 1072, 20018 San Sebastián – Donostia, Spain;3. Instituto de Carboquímica, ICB-CSIC, P.O. Box 549, 50080 Zaragoza, Spain;4. Department of Organic Chemistry I, Universidad del País Vasco – Euskal Herriko Unibertsitatea (UPV/EHU), P° Manuel de Lardizabal 3, 20018 San Sebastián – Donostia, Spain;5. Ikerbasque, Basque Foundation for Science, E-48011 Bilbao, Spain
Abstract:Different generations of dendrimers incorporating one fluorescent core of apigenin and three Fréchet benzylic dendrons have been prepared. The chief geometric features of these dendrimers have been obtained by Molecular Dynamics simulations. These computational data suggest that the asphericities of dendrimers belonging to the third and fourth generations are considerably larger than those associated with lower radii of gyration. Fluorescence spectra of high generation dendrimers evolve along time and quantum yields show an appreciable lowering for the fourth generation dendrimer. All these data suggest aggregation phenomena and lower quantum yields for nonspheric dendrimers in solution.
Keywords:Dendrimers   Apigenin   Fluorescence   Photophysical properties   Quantum yield
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