A series of pure-blue-light emitting Cu(i) complexes with thermally activated delayed fluorescence: structural, photophysical, and computational studies
Four mononuclear Cu(i)-halide complexes containing phosphines and pyridine ligands with strong electron donor substituents, [CuCl(PPh ) (4-NMe py)] (1), [CuI(PPh ) (4-NH py)] (2), [CuI(POP)(4-NH py)] (3), and [CuI(POP)(4-NMe py)]·0.5(Et O) (4), (PPh = triphenylphosphine, 4-NMe py = 4-(dimethylamino)...
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Veröffentlicht in: | Dalton transactions : an international journal of inorganic chemistry 2017, Vol.46 (5), p.1413-1419 |
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Hauptverfasser: | , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Four mononuclear Cu(i)-halide complexes containing phosphines and pyridine ligands with strong electron donor substituents, [CuCl(PPh
)
(4-NMe
py)] (1), [CuI(PPh
)
(4-NH
py)] (2), [CuI(POP)(4-NH
py)] (3), and [CuI(POP)(4-NMe
py)]·0.5(Et
O) (4), (PPh
= triphenylphosphine, 4-NMe
py = 4-(dimethylamino)pyridine, POP = bis[(2-diphenyl-phosphino)phenyl]ether, 4-NH
py = 4-aminopyridine, Et
O = diethyl ether) were synthesized and studied with regard to their structural, photophysical properties and theoretical calculations. The complexes exhibit pure blue thermally activated delayed fluorescence (λ
= 442 (1), 436 (2), 464 (3), and 448 nm (4)) in crystalline at room temperature. Emission lifetime analyses and density functional theory (DFT) calculations show that the blue-light emission at room temperature is the singlet (metal + halide)-to-ligand charge transfer state, (
(M + X)LCT), while that at 77 K is the state of
(M + X)LCT transition character, owing to the small singlet-triplet energy gaps (ΔE = 660-1680 cm
). X-ray diffraction structure analysis, photophysical studies and theoretical calculations suggest that the much larger torsion angle between the N-heterocyclic rings and N-Cu-X planes of complex 3 than that of 1, 2 and 4 might causes the bathochromic shift of luminescence, although these complexes containing similar heterocycle ligands. |
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ISSN: | 1477-9226 1477-9234 |
DOI: | 10.1039/C6DT03965K |