| Literature DB >> 26179641 |
Kamrul Hasan1, Ashu K Bansal2, Ifor D W Samuel2, Cristina Roldán-Carmona3, Henk J Bolink4, Eli Zysman-Colman5.
Abstract
The synthesis, characterization and evaluation in solid-state devices of a series of 8 cationic iridium complexes bearing different numbers of methoxy groups on the cycloEntities:
Year: 2015 PMID: 26179641 PMCID: PMC4648437 DOI: 10.1038/srep12325
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Synthesis of complexes in study.
Reagents and conditions: 2-EtOC2H4OH/H2O (8:1 v/v), 110 °C, N2, 19 h. i. CH2Cl2/MeOH (1:1 v/v), 55 °C, 19 h, N2; ii. Excess aq. NH4PF6.
Figure 2Aromatic region of the 1H NMR spectra of 1b-4b in CD3CN at 298 K.
Inset shows MeO region of spectra.
Figure 3Cyclic voltammograms for 1a-4b recorded at 298 K at 50 mVs−1 in deaerated ACN with 0.1 M (n-Bu4N)PF6.
Figure 4UV-vis absorption spectra for 1a-4b in ACN at 298 K. Inset: Zoomed UV-vis spectra for the low energy region between 350–550 nm.
Figure 5Steady state emission spectra for 1a-4b in degassed ACN at 298 K.
Relevant photophysical data for complex 1a-4b.
| Complex | λem (nm) | ФPL (%) | τ1 (ns) | Α1 | τ2 (ns) | Α2 |
|---|---|---|---|---|---|---|
| 710 | 0.2 | 4.72 | 1 | – | – | |
| 680 | 0.3 | 10.2 | 0.84 | 174 | 0.16 | |
| 618 | 5.7 | 194 | 0.97 | 1505 | 0.03 | |
| 595 | 15.4 | 388 | 0.96 | 2411 | 0.04 | |
| 730 | 0.3 | 1.6 | 0.95 | 29.3 | 0.05 | |
| 700 | 0.1 | 3.2 | 0.82 | 100 | 0.18 | |
| 720 | 0.2 | 1.66 | 0.91 | 23.3 | 0.09 | |
| 685 | 0.2 | 3.2 | 0.78 | 70 | 0.22 |
aMeasured in deaerated ACN at 298 K at excitation wavelength 390 nm.
bUsing [Ru(bpy)3](PF6)2 as the standard (ФPL = 9.5% in deaerated ACN at 298 K).
cA1 and A2 are the pre-exponential factors for the phosphorescence lifetime.
Figure 6Time-resolved photoluminescence spectra for 1a-4b in degassed ACN at 298 K.
The samples were excited at 390 nm. The emission is collected in each case at the peak of the PL spectra. The red dotted sprectrum represent the instrument response function.
Figure 7Photoluminescence spectra of complexes 1a-4b in thin solid films mixed with [BMIM+ :PF6–] in a molar ratio 4:1.
The photoluminescence quantum yield (ΦPL) for the solid films are indicated in the legend (numbers in brackets).
Selected average structural parameters for 1a, 2a, 1b, and 2ba.
| Complexes | 1a | 2a | 3a | 4a | ||||
|---|---|---|---|---|---|---|---|---|
| S0 | T1 | S0 | T1 | S0 | T1 | S0 | T1 | |
| Ir-Nbpy | 2.187 | 2.179 | 2.186 | 2.175 | 2.184 | 2.175 | 2.178 | 2.169 |
| Ir-NC^N | 2.077 | 2.076 | 2.078 | 2.075 | 2.078 | 2.076 | 2.073 | 2.072 |
| Ir-CC^N | 2.030 | 2.002 | 2.028 | 2.008 | 2.028 | 2.003 | 2.039 | 2.011 |
| Nbpy-Ir-Nbpy | 75.5 | 76.0 | 75.6 | 76.1 | 75.7 | 76.1 | 75.9 | 76.4 |
| NC^N-Ir-NC^N | 80.2 | 80.9 | 80.3 | 81.2 | 80.2 | 81.0 | 79.9 | 80.3 |
aBond lengths in Å and bond angles in°.
Figure 8Calculated energy level scheme for the Kohn-Sham orbitals between HOMO-4 to LUMO+4 of 1a-4b, and the associated DFT calculated HOMO-LUMO energy gap (in eV) and electron density contour plots for 1a-4a (0.002 e bohr−3).
The contour plots for 1b-4b mirror those of 1a-4a.
Figure 9Calculated spin density contours of the T1 state for 1a, 2a, 3a and 4a (isocontour value of 0.0004 au).
Predicted Emission Energies.
| Theoretical | λem (298 K) /nm | Error | |||
|---|---|---|---|---|---|
| ETDDFT/nm | E0,0/nm | EAE/nm | |||
| 550.7 | 593.0 | 688.4 | 710 | 3.1 | |
| 483.8 | 507.9 | 566.0 | 618 | 8.4 | |
| 499.6 | 535.5 | 618.0 | 730 | 15.4 | |
| 524.1 | 574.0 | 676.6 | 720 | 6.0 | |
ETDDFT = energy of S0 →T1 transition obtained by TDDFT at the S0 optimized geometry; E0,0 = E(T1)-E(S0) at their respective optimized geometries obtained by DFT; EAE = E(T1)-E(S0) at the T1 optimized geometries (adiabatic electronic emission) obtained by DFT. See experimental section for computational details. All values obtained are in the presence of ACN solvent; Highest energy 77 K emission band reported and highest intensity 298 K emission band reported; Error = |λem(77 K)-E0,0/λem(77 K)| in eV; Error = |λem(298 K)-EAE/λem(298 K)| in eV.
Figure 10Electroluminescence performance for ITO/PEDOT:PSS/4b:IL(4:1)/Al device driven at a constant voltage of 4 V.
Figure 11Electroluminescence spectra obtained for the LEEC device prepared with molecules 4b at 298 K.