| Literature DB >> 27134648 |
Khalida F Al-Azawi1, Shaimaa B Al-Baghdadi1, Ayad Z Mohamed1, Ahmed A Al-Amiery2, Talib K Abed1, Salam A Mohammed3, Abdul Amir H Kadhum4, Abu Bakar Mohamad4.
Abstract
BACKGROUND: The acid corrosion inhibition process of mild steel in 1 M HCl by 4-[(2-amino-1, 3, 4-thiadiazol-5-yl)methoxy]coumarin (ATC), has been investigated using weight loss technique and scanning electron microscopy (SEM). ATC was synthesized, and its chemical structure was elucidated and confirmed using spectroscopic techniques (infrared and nuclear magnetic resonance spectroscopy).Entities:
Keywords: (thiadiazol-5-yl)methoxy)coumarin; Corrosion inhibitor; Isotherm; Weight loss
Year: 2016 PMID: 27134648 PMCID: PMC4850708 DOI: 10.1186/s13065-016-0170-3
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Fig. 1Influences of concentrations vs time for ATC on corrosion rate at 303 K
Fig. 2Influences of concentrations vs time for ATC on corrosion efficiencies at 303 K
Fig. 3Influences of concentrations vs temperatures for ATC on corrosion efficiencies at fixed time
Fig. 4The SEM micrograph for MS in in acidic medium in absence of ATC
Fig. 5The SEM micrographs, for MS in acidic medium with 0.5 mM of the corrosion inhibitor at 30 °C for 5 h as immersion time in presence of ATC
Fig. 6Linear equation
Fig. 7The suggested mechanism of action of the ATC as corrosion inhibitor
Calculated quantum chemical properties for the most stable conformation of (ATC)
| Function | Function values |
|---|---|
| EHOMO | 7.909 eV |
| ELUMO | 3.901 eV |
| EHOMO–ELUMO | −4.008 eV |
|
| 0.164 |
|
| 0.093 |
| Dipole Moment | 4.959 |
Fig. 8Electronic properties of (a) 3d-structure of ATC; (b) HOMO orbital; (c) LUMO orbital; (d) total electron density; (e) Fukui (f−) function; f Fukui (f+) function
Charges (Mulliken charges) for the ATC
| Atom | Charge | Atom | Charge | Atom | Charge | Atom | Charge |
|---|---|---|---|---|---|---|---|
| O(1) | −0.2442 | C(8) | −0.1049 | C(15) | −0.0994 | H(22) | 0.0689 |
| C(2) | 0.3942 | C(9) | −0.0009 | N(16) | −0.1540 | H(23) | 0.0680 |
| O(3) | −0.3089 | C(10) | −0.0871 | N(17) | −0.0458 | H(24) | 0.0876 |
| C(4) | −0.2699 | C(11) | 0.1634 | C(18) | −0.2814 | H(25) | 0.0382 |
| C(5) | 0.2471 | O(12) | −0.2770 | N(19) | −0.2055 | H(26) | 0.0115 |
| C(6) | −0.1560 | C(13) | 0.2660 | H(20) | 0.0977 | H(27) | 0.1429 |
| C(7) | 0.0340 | S(14) | 0.3809 | H(21) | 0.0738 | H(28) | 0.1606 |
Fig. 9The three dimensional structure of ATC