| Literature DB >> 33854091 |
Friday E Ani1,2, Collins U Ibeji3,4, Nnamdi L Obasi5, Monsuru T Kelani2, Kingsley Ukogu1, Gideon F Tolufashe2,6, Segun A Ogundare7,8, Oluwatoba E Oyeneyin9, Glenn E M Maguire2,8, Hendrik G Kruger2.
Abstract
Two Schiff bases, (E)-1-(4-methoxyphenyl)-N-((E)-3-(4-nitrophenyl)allylidene)methanamine (compound 1) and (E)-N-((E)-3-(4-nitrophenyl)allylidene)-2-phenylethanamine (compound 2) have been synthesized and characterized using spectroscopic methods; time of flight MS, 1H and 13C NMR, FT-IR, UV-VIS, photoluminescence and crystallographic methods. The structural and electronic properties of compounds 1 and 2 in the ground state were also examined using the DFT/B3LYP functional and 6-31 + G(d,p) basis set, while the electronic transitions for excited state calculations were carried out using the TD-DFT/6-31 + G(d,p) method. The Schiff base compounds, 1 and 2 crystallized in a monoclinic crystal system and the P21/c space group. The emission spectra of the compounds are attributed to conjugated π-bond interaction while the influence of the intra-ligand charge transfer resulted in a broad shoulder for 1 and a double emission peak for 2. The calculated transitions at 450 and 369 nm for 1 and 2 respectively are in reasonable agreement with the experimental results. The higher values of dipole moment, linear polarizability and first hyperpolarizability of 1, suggest a better optical property and better candidate for the development of nonlinear optical (NLO) materials.Entities:
Year: 2021 PMID: 33854091 PMCID: PMC8046777 DOI: 10.1038/s41598-021-87370-0
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Scheme 1Synthesis of (E)-1-(4-methoxyphenyl)-N-((E)-3-(4 nitrophenyl)allylidene)methanamine (1).
FT-IR Spectral assignments.
| Assignmentsa | ||
|---|---|---|
| 3088 | 3031 | υaromatic(C–H) |
| 2947 | 2926 | υaliphatic(C–H) |
| 1593 | 1591 | υ(C=N) |
| 1443, 1341 | 1506, 1347 | υ(NO2) |
| 1242, 1040 | υmethoxy(C–O) | |
| 1106 | 1106 | γaromatic(C–H) |
| 816, 734, 690 | 974, 836, 752, 696 | ζaromatic(C–H) |
a υ: stretching, γ: bending, ζ: out of plane bending.
Scheme 2Synthesis of (E)-N-((E)-3-(4-nitrophenyl)allylidene)-2-phenylethanamine (2).
Crystallographic data of the Schiff base compounds.
| Compound | ||
|---|---|---|
| Formula | C17H16N2O3 | C17H16N2O2 |
| 1.368 | 1.277 | |
| Abs. coef./mm−1 | 0.095 | 0.085 |
| Formula Weight | 296.32 | 280.32 |
| Colour | Orange | Orange |
| Shape | Rod | Plank |
| Size/mm3 | 0.38 × 0.22 × 0.14 | 0.32 × 0.24 × 0.13 |
| 100(2) | 100(2) | |
| Crystal System | Monoclinic | Monoclinic |
| Space Group | ||
| 13.8304(2) | 8.0465(2) | |
| 13.1877(2) | 6.25250(10) | |
| 8.20150(10) | 29.0701(6) | |
| α/° | 90 | 90 |
| β/° | 105.8830(10) | 94.5220(10) |
| γ/° | 90 | 90 |
| V/Å3 | 1438.77(4) | 1457.99(5) |
| 4 | 4 | |
| 1 | 1 | |
| Wavelength/Å | 0.71073 | 0.71073 |
| Radiation type | MoK□ | MoK□ |
| 2.175 | 2.539 | |
| 28.306 | 28.611 | |
| Measured Refl | 18,648 | 20,491 |
| Independent Refl | 3505 | 3710 |
| Reflections with I > 2(I) | 2802 | 3242 |
| 0.0286 | 0.0163 | |
| Parameters | 200 | 190 |
| Restraints | 0 | 0 |
| Largest Peak | 0.318 | 0.359 |
| Deepest Hole | −0.192 | −0.220 |
| GooF | 1.026 | 1.034 |
| 0.0991 | 0.0999 | |
| 0.0894 | 0.0950 | |
| 0.0501 | 0.0430 | |
| 0.0363 | 0.0368 |
Selected Experimental and calculated bond lengths (Ǻ) of 1 and 2.
| Atoms | Experimental | Computed | Bond length (Ǻ) | Experimental | Computed |
|---|---|---|---|---|---|
| O1–N1 | 1.2266(13) | 1.23131 | O1–N1 | 1.2297(12) | 1.23157 |
| N2–C9 | 1.2713(15) | 1.27904 | O2–N1 | 1.2257(12) | 1.23180 |
| N2–C10 | 1.4631(15) | 1.45517 | C16–C15 | 1.3857(16) | 1.39596 |
| O3–C14 | 1.3705(14) | 1.36708 | C16–C17 | 1.3861(15) | 1.39488 |
| O3–C17 | 1.4348(14) | 1.41815 | C15–C14 | 1.3849(16) | 1.39551 |
| O2–N1 | 1.2258(13) | 1.23131 | C14–C13 | 1.3896(15) | 1.39543 |
| N1–C1 | 1.4660(15) | 1.46908 | C13–C12 | 1.3927(14) | 1.40109 |
| C5–C6 | 1.3807(16) | 1.38930 | C12–C11 | 1.5085(14) | 1.38653 |
| C5–C4 | 1.4060(15) | 1.40906 | C12–C17 | 1.3937(14) | 1.40181 |
| C9–C8 | 1.4515(16) | 1.46342 | C11–C10 | 1.5244(14) | 1.54432 |
Selected experimental and calculated bond angles (°) of 1 and 2.
| Atoms | Experimental | Computed | Atoms | Experimental | Computed |
|---|---|---|---|---|---|
| C9–N2–C10 | 115.87(10) | 122.09321 | C15–C16–C17 | 120.24(10) | 120.11142 |
| C14–O3–C17 | 116.77(9) | 118.11922 | C14–C15–C16 | 119.70(10) | 119.56012 |
| O1–N1–C1 | 118.48(10) | 117.65622 | C15–C14–C13 | 119.98(10) | 120.10025 |
| O2–N1–O1 | 123.43(10) | 124.69859 | C14–C13–C12 | 120.88(10) | 120.10645 |
| O2–N1–C1 | 118.08(9) | 117.64519 | C13–C12–C11 | 121.41(9) | 120.95616 |
| C6–C5–C4 | 120.65(11) | 121.45528 | C13–C12–C17 | 118.44(9) | 118.32992 |
| N2–C9–C8 | 122.81(11) | 130.10955 | C17–C12–C11 | 120.13(9) | 120.69158 |
Figure 1Crystal structures of the compounds with atom labelling (thermal ellipsoid, 50%).
Electronic absorption spectral data of 1 and 2 molecules.
| Major contributiona | Wavelength (nm) | Oscillator strength (f) | Energy (eV) | ||
|---|---|---|---|---|---|
| Calc | Expt | ||||
| H → L(99%) | 450 | 486 | 0.0067 | 2.7570 | |
| H-1 → L(99%) | 359 | 0.9242 | 3.4539 | ||
| H-2 → L(47%) | 340 | 0.001 | 3.6414 | ||
| H → L(98%) | 369 | 478 | 0.6816 | 3.3557 | |
| H-1 → L(73%) | 344 | 0.2471 | 3.6003 | ||
| H-3 → L(48%) | 339 | 0.0263 | 3.6577 | ||
a H: HOMO, L: LUMO.
Calculated total dipole moments (µ), average linear polarizability () and the first hyperpolarizability (β) and for the Schiff base compounds.
| Parameter | Urea | |||
|---|---|---|---|---|
| µ (D) | 4.35 | 3.54 | 1.37a | 4.58c |
| − 141.76 | − 136.84 | – | ||
| β (a.u) | 773.73 | 250.15 | – | |
| β (× 10−30 esu) | 6.68 | 2.16 | 0.65b | 6.13d |
a[54], b, c, d[55].
The electronic properties and global reactivity descriptors of 1 and 2.
| Parameter (eV) | ||
|---|---|---|
| HOMO | − 6.06 | − 6.81 |
| LUMO | − 3.30 | − 3.24 |
| Energy gap | 2.76 | 3.57 |
| Chemical hardness (η) | 1.38 | 1.79 |
| Electronegativity (Ʋ) | 4.68 | 5.03 |
| Softness (ζ) | 0.36 | 0.28 |
Figure 23D plots of HOMO and LUMO for the compounds.
The second-order perturbation energies E(2) associated with the delocalization of donor and acceptor bonds of 1 and 2 obtained at B3LYP/6-311G(d,p).
| Donor (i) | Acceptor (j) | E(2)a (kcal mol−1) |
|---|---|---|
| BD (2) C1–C2 | BD*(2) N11–O12 | 25.45 |
| BD*(2) C21–C25 | BD*(2) C18–C19 | 217.77 |
| LP (2) O12 | BD*(1) N11–O 13 | 19.24 |
| LP (3) O13 | BD*(2) N11–O 12 | 163.35 |
| LP (1) N33 | BD*(1) C16–H36 | 12.99 |
| BD (2) C1–C2 | BD*(2) C5–C6 | 18.21 |
| BD (2) C27–C29 | BD*(2) C32–C34 | 21.25 |
| LP (2) O12 | BD*(1) N11–O13 | 19.24 |
| LP (3) O13 | BD*(2) N11–O12 | 163.31 |
| LP (1) N18 | BD*(1) C16–H21 | 13.21 |
a E(2) means energy of hyperconjugative interactions (stabilization energy).
Figure 3Molecular electrostatic potential (MEP) map of the compounds.