| Literature DB >> 35888309 |
Mai M Khalaf1,2, Hany M Abd El-Lateef1,2, Mohamed Gouda1, Fatma N Sayed3, Gehad G Mohamed3,4, Ahmed M Abu-Dief2,5.
Abstract
Some novel imine metal chelates with Cr3+, Mn2+, Fe3+, Co2+, Ni2+, Cu2+, Zn2+, and Cd2+ cations were produced from 2-acetylferrocene and 3-aminophenol. The new acetylferrocene azomethine ligand ((Z)-cyclopenta-1,3-dien-1-yl(2-(1-((3-hydroxyphenyl)imino)ethyl)cyclopenta-2,4-dien-1-yl)iron) and its metal ion chelates were constructed and elucidated using FT-IR, UV/Vis, 1HNMR, DTA/TGA, CHNClM studies, mass spectrometry and SEM analysis. According to the TGA/DTG investigation, the ferrocene moiety spontaneously disintegrates to liberate FeO. The morphology of the free acetylferrocene azomethine via SEM analysis was net-shaped with a size of 64.73 nm, which differed in Cd(II) complex to be a spongy shape with a size of 42.43 nm. The quantum chemical features of the azomethine ligand (HL) were computed, and its electronic and molecular structure was refined theoretically. The investigated acetylferrocene imine ligand behaves as bidinetate ligand towards the cations under study to form octahedral geometries in case of all complexes except in case of Zn2+ is tetrahedral. Various microorganisms were used to investigate the anti-pathogenic effects of the free acetylferrocene azomethine ligand and its metal chelates. Moreover, the prepared ligand and its metal complexes were tested for anticancer activity utilizing four different concentrations against the human breast cancer cell line (MCF7) and the normal melanocyte cell line (HBF4). Furthermore, the binding of 3-aminophenol, 2-acetylferrocene, HL, Mn2+, Cu2+, and Cd2+ metal chelates to the receptor of breast cancer mutant oxidoreductase was discovered using molecular docking (PDB ID: 3HB5).Entities:
Keywords: DFT; acetylferrocene azomethine ligand; biological activities; docking; physicochemical studies
Year: 2022 PMID: 35888309 PMCID: PMC9317992 DOI: 10.3390/ma15144842
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748
Physical and analytical data of organometallic acetylferrocene azomethine ligand and its metal chelates.
| Compound | Colour | M.p. | % Calcd. (Found) | Λm | ||||
|---|---|---|---|---|---|---|---|---|
| C | H | N | Cl | M | ||||
| HL | Greenish yellow | 92–95 | 67.61 | 5.32 | 4.38 | ------ | 17.68 | ------ |
| [Cr(HL)(H2O)3Cl]Cl2·3H2O | Black | >300 | 36.86 | 4.95 | 2.39 | 18.17 | 18.52 | 110 |
| [Mn(HL)(H2O)4]Cl2·H2O | Black | >300 | 40.34 | 5.04 | 2.61 | 13.26 | 20.63 | 104 |
| [Fe(HL)(H2O)2Cl2]Cl·3H2O | Black | >300 | 37.73 | 4.72 | 2.45 | 18.60 | 19.74 | 59 |
| [Co(HL)(H2O)4]Cl2·2H2O | Black | 137–139 | 38.81 | 5.21 | 2.52 | 12.76 | 20.58 | 103 |
| [Ni(HL)(H2O)3Cl]Cl·2H2O | Brown | >300 | 40.04 | 5.00 | 2.59 | 13.16 | 21.41 | 66 |
| [Cu(HL)(H2O)2Cl2]·2H2O | Brown | >300 | 41.06 | 4.75 | 2.66 | 13.50 | 22.81 | 22 |
| [Zn(HL)Cl2]·2H2O | Black | 143–145 | 43.95 | 4.27 | 2.85 | 14.45 | 24.72 | 19 |
| [Cd(HL)(H2O)2Cl2] | Brown | 208–210 | 40.11 | 3.90 | 2.60 | 13.18 | 31.29 | 5 |
IR spectra (4000–400 cm−1) of organometallic acetylferrocene azomethine ligand HL and its metal chelates.
| HL | CrHL | MnHL | FeHL | CoHL | NiHL | CuHL | ZnHL | CdHL | Assignment |
|---|---|---|---|---|---|---|---|---|---|
| 3444 br | 3428 br | 3428 br | 3415 br | 3423 br | 3416 br | 3417 br | 3446 br | 3411 br | υ(OH) |
| 1655 sh | 1620 m | 1626 m | 1604 m | 1612 m | 1624 m | 1597 m | 1614 sh | 1649 m | υ(C=N) |
| 1277 w | 1267 w | 1281 w | 1282 w | 1283 w | 1277 w | 1270 w | 1282 w | 1281 w | υ(C-O) |
| ------ | 970 s, 874 w | 960 s, 815 w | 970 s, 831 w | 905 s, 824 s | 960 s, 820 w | 980 s, 853 w | ----------- | 894 w, 830 m | υ(H2O) |
| ------- | 604 w | 610 s | 620 s | 613 m | 621 w | 681 w | ----------- | 617 sh | M-O stretch of |
| ------- | 520 s | 598 w | 597 w | 531 w | 533 s | 584 s | 528 s | 534 w | M-O |
| ------ | 450 s | 492 s | 472 w | 466 s | 499 s | 460 s | 486 w | 490 w | M-N |
sh = sharp, br = broad, s = small, w = weak, m = medium.
Figure 1Mass spectrometry of (a) the free acetylferrocene azomethine ligand and (b) [Co(HL)(H2O)4]Cl2·2H2O.
Figure 2Molecular orbitals of the free acetylferrocene azomethine ligand HL (a) HOMO (b) HOMO-1 (c) HOMO-2 (d) LUMO (e) LUMO + 1 (f) LUMO + 2; and [Co(HL)(H2O)4]Cl2·2H2O complex (g) HOMO and (h) LUMO.
The different quantum chemical parameters of the free acetylferrocene azomethine ligand.
| The Calculated Quantum Chemical Parameters | ||
|---|---|---|
| HL | [Co(HL)(H2O)4]Cl2·2H2O | |
| −5.77 | −1.84 | |
| −1.48 | −1.25 | |
| Δ | 4.29 | 3.75 |
| 3.63 | 1.32 | |
| 2.15 | 1.95 | |
| 0.47 | 0.51 | |
| −3.63 | −1.32 | |
| 0.23 | 0.26 | |
| 3.06 | 0.45 | |
| Δ | 1.69 | 0.68 |
Thermo-analytical results (TG and DTG) of the organometallic acetylferrocene azomethine ligand (HL) and its metal chelates.
| Complex | TG Range | DTGmax (°C) | n* | Mass Loss Total Mass Loss | Assignment | Residues |
|---|---|---|---|---|---|---|
| HL | 35–260 | 198 | 1 | 57.13 (57.28) | - Disposal of C13H13N | FeO |
| 260–695 | 363, 689 | 2 | 20.53 (20.03) 77.66 (77.31) | - Disposal of C5H4. | ||
| CrHL | 30–140 | 77 | 1 | 9.17 (9.22) | - Disposal of 3H2O. | ½Cr2O3 + FeO + 7C |
| 140–1000 | 854 | 1 | 50.72 (51.11) 59.88 (60.32) | - Disposal of 3HCl, H2O and C11H18NO0.5. | ||
| MnHL | 45–170 | 129 | 1 | 7.75 (6.54) | - Disposal of H2O and NH3. | MnO + FeO |
| 170–440 | 179, 254, 411 | 3 | 10.26 (10.08) | - Disposal of 3H2O. | ||
| 440–685 | 613 | 1 | 19.23 (18.86) | - Disposal of 2HCl and C2H4. | ||
| 685–1000 | 967 | 1 | 35.95 (37.72) 73.19 (73.20) | - Disposal of C16H10. | ||
| FeHL | 50–275 | 100 | 1 | 13.80 (12.40) | - Disposal of 3H2O and NH3. | ½Fe2O3 + FeO + 12C |
| 275–580 | 350 | 1 | 15.90 (15.55) | - Disposal of 2HCl and CH4. | ||
| 580–1000 | 634, 666 | 2 | 20.21 (20.35) 49.91 (48.12) | - Disposal of C5H12ClO0.5. | ||
| CoHL | 45–190 | 129 | 1 | 12.52 (12.40) | - Disposal of 2H2O, NH3 and CH4. | CoO + FeO + 4C |
| 190–1000 | 346, 587 | 2 | 51.94 (52.65) 64.45 (65.05) | - Disposal of 3H2O and C13H12Cl2. | ||
| NiHL | 35–145 | 81 | 1 | 9.36 (9.88) | - Disposal of 2H2O and NH3. | NiO + FeO + 6C |
| 145–355 | 224 | 1 | 16.60 (16.40) | - Disposal of 2H2O, HCl and CH4. | ||
| 335–1000 | 410, 865, 968 | 3 | 33.97 (33.09) 59.90 (59.31) | - Disposal of C11H11Cl. | ||
| CuHL | 45–130 | 91 | 1 | 5.78 (6.84) | - Disposal of 2H2O. | CuO + FeO + 7C |
| 130–1000 | 161, 645 | 2 | 48.38 (48.29) 54.15 (55.13) | - Disposal of H2O and C11H19NCl2. | ||
| ZnHL | 45–275 | 77 | 1 | 6.69 (6.92) | - Disposal of H2O and CH4. | ZnO + FeO + 3C |
| 275–730 | 402, 585 | 2 | 24.06 (24.01) | - Disposal of C2H4, 2HCl and NH3. | ||
| 730–1000 | 954 | 1 | 30.82 (30.52) 61.56 (61.44) | - Disposal of C12H6. | ||
| CdHL | 40–220 | 185 | 1 | 27.68 (27.86) | - Disposal of NH3, H2O, C3H6 and 2HCl. | CdO + FeO |
| 220–600 | 236, 266, 519 | 3 | 35.18 (34.91) 62.86 (62.77) | - Disposal of C15H8. |
n* = number of decomposition stages.
Figure 3SEM graphs of (a) ligand and (b) [Cd(HL)(H2O)2Cl2] complex.
Figure 4The suggested structures for acetylferrocene azomethine metal chelates.
Figure 5Biological activities of acetylferrocene azomethine ligand HL and its metal chelates.
Figure 6Anticancer activity of the azomethine acetylferrocene metal chelates.
Figure 73D plot of the interaction between the receptor of 3HB5 with (a) 3-aminophenol, (b) 2-acetylferrocene, (c) HL, (d) Mn(II) complex, (e) Cu(II) complex and (f) Cd(II) complex.