| Literature DB >> 34255256 |
Marco Bortoluzzi1, Valentina Ferraro2, Federica Sartor2.
Abstract
Bright photoluminescent neutral complexes having general formula [Ln(tbtz)3] (Ln = Eu, Tb; tbtz = tris(benzotriazol-1-yl)borate) were obtained by reacting K[tbtz] with EuCl3 and TbCl3. The emissions in the visible range, related to the f-f transitions of the trivalent lanthanide ions, are observable upon excitation with wavelengths shorter than 350 nm. The most intense emission bands correspond to the 5D0 → 7F4 transition at 699 nm for the europium complex and to the 5D4 → 7F5 transition at 542 nm for the terbium derivative. The luminescence is in all the cases mostly associated with the antenna-effect from the coordinated tbtz ligands. The synthetic approach was successfully extended to the preparation of the analogous yttrium and gadolinium derivatives. Tricapped trigonal prismatic geometry was attributed to the complexes on the basis of luminescence data and DFT calculations. Highly photoluminescent plastic materials were obtained by embedding small amounts of [Eu(tbtz)3] or [Tb(tbtz)3] in poly(methyl methacrylate).Entities:
Keywords: Benzotriazole; Doped polymers; Lanthanides; Ln3+ transitions; Scorpionates
Year: 2021 PMID: 34255256 PMCID: PMC8417014 DOI: 10.1007/s10895-021-02772-7
Source DB: PubMed Journal: J Fluoresc ISSN: 1053-0509 Impact factor: 2.217
Scheme 1Synthesis of [Ln(tbtz)3] complexes
Fig. 1PL (red line, λexcitation = 310 nm) and PLE (violet line, λemission = 700 nm) of solid [Eu(tbtz)3] at room temperature. Inset: absorption spectra of 10–5 M CH2Cl2 solutions of [Ln(tbtz)3] complexes
Fig. 2DFT-optimized geometry of [Eu(tbtz)3]. Hydrogen atoms are omitted for clarity. Inset: tricapped trigonal prism surrounding the Eu(III) centre. Colour map: Eu, violet; N, blue; C, grey; B, yellow. Selected computed Ln-N bond lengths (Á): [Eu(tbtz)3], 2.511 – 2.515 (trigonal prism), 2.729 – 2.742 (capped); [Gd(tbtz)3], 2.497 – 2.502 (trigonal prism), 2.735 – 2.739 (capped); [Tb(tbtz)3], 2.484 – 2.488 (trigonal prism), 2.720 – 2.736 (capped); [Y(tbtz)3], 2.493 – 2.497 (trigonal prism), 2.725 – 2.741 (capped)
Fig.3Semi-log plot of the luminescence decay curve of [Eu(tbtz)3] (red line) and monoexponential fit (black line). Solid sample, r.t., λexcitation = 310 nm, λemission = 700 nm. Inset: CIE 1931 chromaticity diagram
Absorption and emission data of the complexes and of the doped polymers
| Compound | [a] UV–VIS, nm | [b] PL, nm | [b] PLE, nm | [b]
| CIE | |
|---|---|---|---|---|---|---|
| [Y(tbtz)3] | 278 (40,100) | ––––– | ––––– | ––––– | ––––– | ––––– |
| [Eu(tbtz)3] | 280 (37,400) | [c] 579 (5D0 → 7F0, 0.8%) 588, 592, 596 (5D0 → 7F1, 8.8%) 613, 616 (5D0 → 7F2, 28.1%) 649, 651 (5D0 → 7F3, 2.4%) 699 (5D0 → 7F4, 59.9%) | [d]
(ligand excitation, max 309) 361, 375, 383 (Eu3+ excitation) 394 (5L6 ← 7F0 Eu3+ excitation) | [c,d] 0.341 | 19 | x = 0.643 y = 0.353 |
| [Gd(tbtz)3] | 276 (36,800) | [e] 364 very weak | ––––– | [f,g] < 5·10–4 | ––––– | ––––– |
| [Tb(tbtz)3] | 274 (36,100) | [c] 489 (5D0 → 7F6, 16.9%) 542 (5D0 → 7F5, 58.8%) 583, 587 (5D0 → 7F4, 14.1%) 620 (5D0 → 7F3, 10.2%) | [h]
(ligand excitation, max 307) 350, 367, 378 (Tb3+ excitation) | [f,i] 0.383 | 9 | x = 0.354 y = 0.566 |
| [Eu(tbtz)3]@PMMA | ––––– | [c] 579 (5D0 → 7F0, 0.9%) 588, 594 (5D0 → 7F1, 11.7%) 612, 617 (5D0 → 7F2, 37.2%) 650 (5D0 → 7F3, 2.7%) 695, 700 (5D0 → 7F4, 47.5%) | [d]
(ligand excitation, max 309) 361 (Eu3+ excitation) 394 (5L6 ← 7F0 Eu3+ excitation) | [c,d] 0.370 | 16 | x = 0.646 y = 0.351 |
| [Tb(tbtz)3]@PMMA | ––––– | [c] 489 (5D0 → 7F6, 18.2%) 544 (5D0 → 7F5, 56.7%) 583 (5D0 → 7F4, 15.2%) 621 (5D0 → 7F3, 9.9%) | [h]
(ligand excitation, max 311) 351, 368, 378 (Tb3+ excitation) | [f,i] 0.630 | 13 | x = 0.355 y = 0.571 |
[a]CH2Cl2 solution, 298 K
[b] Solid sample, r.t
[c] λexcitation = 310 nm
[d] λemission = 700 nm
[e] λexcitation = 280 nm
[f] λexcitation = 320 nm
[g] λemission = 410 nm
[h] λemission = 542 nm
[i] λemission = 544 nm
Fig. 4PL (green line, λexcitation = 310 nm) and PLE (violet line, λemission = 542 nm) of solid [Tb(tbtz)3] at room temperature. Picture: emissions of 10–4 M CH2Cl2 solutions of [Ln(tbtz)3] (Ln = Eu, Tb) under UV light a and after addition of one b and two c equivalents of CH3SO3H
Fig. 5PL and PLE spectra of solid [Ln(tbtz)3] and [Ln(tbtz)3]@PMMA. Ln = Eu, red; Ln = Tb, green. Solid line, doped polymer; dashed line, pure complex. Inset: [Ln(tbtz)3]@PMMA samples (0.040 gcomplex/gpolymer) under UV irradiation. Inset: semi-log plot of the luminescence decay curves of solid [Tb(tbtz)3]@PMMA (solid line) and [Tb(tbtz)3] (dots), λexcitation = 320 nm, λemission = 542 nm