| Literature DB >> 25826785 |
Armando I Martínez Pérez1, Oscar Coreño Alonso2, Julián Cruz Borbolla3, José M Vásquez-Pérez3,4, Juan Coreño Alonso3, Karina Alemán Ayala3, Gabriel Luna-Bárcenas5, Thangarasu Pandiyan6, Rosa A Vázquez García7.
Abstract
Phenyleneimine oligomers 4,4'-(((1E,1'E)-(((1E,1'E)-(1,4-phenylenebis-(azanylylidene))bis(methanylylidene))bis(2,5-bis(octyloxy)-4,1-phenylene))bis(methanylyl-idene))-bis(azanylylidene))dianiline (OIC1MS) and 7,7'-(((1E,1'E)-(((1E,1'E)-((9H-Entities:
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Year: 2015 PMID: 25826785 PMCID: PMC6272491 DOI: 10.3390/molecules20045440
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of the conjugated oligoimines (a) OIC1MS and (b) OIC2MS.
Figure 1FTIR spectra of oligoimines.
Figure 2Raman spectra of oligoimines.
Figure 31H-NMR of (a) OIC1MS; and (b) OIC2MS oligomers.
Figure 4Absorption spectra: (a) OIC1MS; and (b) OIC2MS in different solvents at a concentration of 0.004 mg/ mL.
Optical properties of OIC1MS and OIC2MS in different solvents.
| SOLVENT | λmax/nm OIC1MS | ε × 104 (M−1 cm−1) | λmax/nm OIC2MS | ε × 104 (M−1 cm−1) |
|---|---|---|---|---|
| Toluene | 430 | 2.4 | 449 | 1.7 |
| Chloroform | 430 | 2.3 | 425 | 3.2 |
| Methanol | 434 | 1.7 | 425 | 1.5 |
| Dichloromethane | 430 | 1.6 | 449 | 2 |
| Tetrahydrofuran | 437 | 0.0982 | 440 | 1.1 |
Figure 5The change of color for OIC2MS in chloroform upon sunlight exposure. (a) Pale yellow solution under dark conditions and (b) pale violet solution after light exposure for 2 min at room temperature.
Figure 6Absorption spectrum of OIC2MS under dark conditions without photo irradiation (red-open line) and photochromic effect of OIC2MS in chloroform upon sunlight irradiation (black-solid line) at room temperature.
Figure 7(a) IR spectra of OIC1MS (above) and OIC2MS (below) calculated at the PBEPBE/6-31G* level of theory. (b) Raman spectra of OIC1MS (above) and OIC2MS (below) calculated with the same methodology as the IR.
Figure 8Theoretical UV/visible spectra of the OIC1MS molecule calculated with the M062x functional. The calculation was performed with the whole molecule without solvent (black line), with the aromatic backbone without solvent (blue line) and with the aromatic backbone and the implicit solvent parameters for toluene (red line).
Figure 9Gaseous state TD-DFT UV/visible spectra of OIC1MS calculated using the M062x functional (black line), M06 functional (blue line) and PBE0 functional (red line).
Electronic excitations of OIC1MS with oscillator strengths (>0.1) and major contributions (above 10%).
| Wavelength (nm) | Oscillator Strength | Major Contributions |
|---|---|---|
| 435.6 | 3.1 | H-1→L+1 (13%), HOMO→LUMO (73%) |
| 348.7 | 0.1 | H-2→LUMO (42%), H-1→L+1 (19%) |
| 298.5 | 0.3 | H-7→LUMO (16%) |
| 275.8 | 0.2 | H-2→LUMO (30%) |
| 221.1 | 0.2 | H-6→L+1 (16%), H-2→L+2 (22%) |
| 218.3 | 0.1 | H-6→L+1 (52%), H-2→L+2 (11%) |
| 215.2 | 0.1 | H-1→L+7 (25%), HOMO→L+7 (18%), HOMO→L+8 (14%) |
| 212.9 | 0.1 | H-3→L+2 (20%), HOMO→L+7 (16%) |
Figure 10TD-DFT UV/visible spectrum of OIC2MS, calculated for the gaseous state using the M062x functional (black line), M06 functional (blue line) and PBE0 functional (red line).
Electronic excitations for OIC2MS with oscillator strengths (>0.1) and major contributions (above 10%).
| Wavelength (nm) | Oscillator Strength | Major Contributions |
|---|---|---|
| 426.4 | 1.13 | H-2→LUMO (13%), H-1→L+1 (13%), HOMO→LUMO (44%) |
| 409.2 | 0.43 | H-2→LUMO (17%), H-1→LUMO (23%), HOMO→L+1 (26%) |
| 380.2 | 0.47 | H-2→LUMO (20%), H-1→L+1 (22%) |
| 371.0 | 0.53 | H-2→LUMO (16%), H-2→L+1 (40%) |
| 329.7 | 0.13 | H-4→LUMO (38%), H-3→L+1 (23%) |
| 300.0 | 0.23 | H-14→L+1 (10%), H-1→LUMO (14%) |
| 295.1 | 0.23 | H-17→LUMO (11%), H-15→LUMO (10%), H-1→LUMO (11%), H-1→L+1 (10%), HOMO→L+1 (12%) |
| 291.1 | 0.18 | H-2→LUMO (11%), H-1→LUMO (13%), H-1→L+1 (12%), HOMO→LUMO (18%) |
| 283.1 | 0.10 | H-1→L+1 (20%), HOMO→L+1 (25%) |
| 281.6 | 0.26 | H-1→L+6 (10%), HOMO→L+6 (15%) |
| 276.2 | 0.23 | H-1→L+6 (17%), HOMO→L+6 (14%) |
| 266.7 | 0.22 | H-1→L+3 (10%), HOMO→L+2 (15%), HOMO→L+3 (10%) |
| 261.7 | 0.28 | H-2→L+2 (25%) |
Figure 11Molecular orbitals: HOMO (top) and LUMO (bottom) of OIC1MS calculated at the M062X/6-31G* level of theory. The aliphatic chains were removed, and the geometries were optimized as described in the text.
Figure 12Molecular orbitals: HOMO (top) and LUMO (bottom) for OIC2MS calculated at the M062X/6-31G* level of theory. The aliphatic chains were removed and the geometries were optimized as described in the text.