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High Efficiency FRET Processes in BODIPY Functionalized Quantum Dot Architectures

Academic Article
Publication Date:
2020
abstract:
Efficient FRET systems are developed combining colloidal CdSe quantum dots (QDs) donors and BODIPY acceptors. To promote effective energy transfer in FRET architectures, the distance between the organic fluorophore and the QDs needs to be optimized by a careful system engineering. In this context, BODIPY dyes bearing amino-terminated functionalities are used in virtue of the high affinity of amine groups in coordinating the QD surface. A preliminary QD surface treatment with a short amine ligand is performed to favour the interaction with the organic fluorophores in solution. The successful coordination of the dye to the QD surface, accomplishing a short donor-acceptor distance, provides effective energy transfer already in solution, with efficiency of 76%. The efficiency further increases in solid state where the QDs and the dye are deposited as single coordinated units from solution, with a distance between the fluorophores down to 2.2 nm, demonstrating the effectiveness of the coupling strategy.
Iris type:
01.01 Articolo in rivista
Keywords:
BODIPY functionalization; Energy Tra; FRET QD-Dye; Luminescence Decay Dynamics; Quantum Dots
List of contributors:
Fanizza, Elisabetta; Curri, MARIA LUCIA; Striccoli, Marinella; Ingrosso, Chiara; Panniello, Annamaria; Castriciano, Maria; Trapani, Mariachiara; Cordaro, Massimiliano
Authors of the University:
CASTRICIANO MARIA
INGROSSO CHIARA
PANNIELLO ANNAMARIA
STRICCOLI MARINELLA
TRAPANI MARIACHIARA
Handle:
https://iris.cnr.it/handle/20.500.14243/377982
Published in:
CHEMISTRY - A EUROPEAN JOURNAL
Journal
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