tailieunhanh - Corrosion inhibition perfomance of four natural thiazole derivatives: Quantum chemical and monte carlo simulation studies

The results indicate that sulphur and nitrogen atoms as well as π-electronic systems within the thiazole ring aided the interaction between the inhibitor molecules and the Fe surface. All the four thiazole molecules adsorbed in parallel orientations on Fe (110) surface which ensures strong interactions with Fe. The adsorption energies were in accord with the results obtained using quantum chemical calculations. | Vietnam Journal of Science and Technology 55 (6A) (2017) 35-50 CORROSION INHIBITION PERFOMANCE OF FOUR NATURAL THIAZOLE DERIVATIVES: QUANTUM CHEMICAL AND MONTE CARLO SIMULATION STUDIES Duy Quang Dao1, *, Thi Chinh Ngo1, Nguyen Minh Thong2, Pham Cam Nam3 1 Institute of Research and Development, Duy Tan University, 03 Quang Trung, Da Nang, Viet Nam 2 The University of Danang, Campus in Kon Tum, 704 Phan Dinh Phung, Kon Tum, Viet Nam 3 Department of Chemistry, University of Science and Technology - The University of Da Nang, 54 Nguyen Luong Bang, Lien Chieu, Da Nang, Viet Nam * Email: daoduyquang@ Received: 15 June 2017; Accepted for publication: 21 December 2017 ABSTRACT Some thiazole derivatives: 2-acetyl-thiazole, 2-isobutyl-thiazole, 4-methyl-5-(2hydroxyethyl)-thiazole, 2,4,5-trimethyl-thiazole used as corrosion inhibitors for iron were calculated at DFT-PBEPBE/6-31+G(d,p) level of theory and by Monte Carlo simulations. Quantum chemical parameters such as EHOMO, ELUMO, and HOMO and LUMO energy gap, chemical potential ( ), electronegativity , global hardness , softness (S), dipole moment and electrophilicity index have been calculated and discussed in detail to evaluate their inhibiting effectiveness. Mulliken-charges distribution and Fukui function were also calculated in order to visualize the reactive sites of the inhibitor molecules. Calculated results show that 2acetyl-thiazole represents as the most efficient corrosion inhibitor. The –C4=C5– atomic center of thiazole ring demonstrates as the adsorption site in reaction with metallic surface. Corrosion inhibition effectiveness can be classified in decreasing order: ATZ > TMTZ SFR > ISTZ. Adsorption energies and interaction configurations of the four thiazole derivatives on Fe (110) were obtained using the Monte Carlo simulations. The results indicate that sulphur and nitrogen atoms as well as π-electronic systems within the thiazole ring aided the interaction between the inhibitor molecules and .

TỪ KHÓA LIÊN QUAN
crossorigin="anonymous">
Đã phát hiện trình chặn quảng cáo AdBlock
Trang web này phụ thuộc vào doanh thu từ số lần hiển thị quảng cáo để tồn tại. Vui lòng tắt trình chặn quảng cáo của bạn hoặc tạm dừng tính năng chặn quảng cáo cho trang web này.