Single-molecule
functional materials with luminescence tunable
by external stimuli are of increasing interest due to their application
in sensors, display devices, biomarkers, and switches. Herein, new
europium and samarium complexes with ligands having triphenylamine
(TPA) groups as the redox center and 2,2′-bipyridine
(bpy) as the coordinating groups and diketonate (tta) as the second
ligand have been constructed. The complexes show white-light emission
in selected solvents for proper mixtures of the emission from Ln3+ ions and the ligands. Meanwhile, they exhibit reversible
luminescence switching on/off properties by controlling the external
potential owing to intramolecular energy transfer from the Ln3+ ions to the electrochemically generated radical cation of TPA
•+
. Time-dependent density
functional theory (TD-DFT) calculations have been performed to study
the electronic spectra. The proposed intramolecular energy transfer
processes have been verified by density functional theory (DFT) studies.
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