Synthesis and Evaluation of Corrosion Inhibiting Activity of New Molecular Hybrids Containing the Morpholine, 1,4-Naphthoquinone, 7-Chloroquinoline and 1,3,5-Triazine Cores

R. Westphal, J. L. Pina, J. P. Franco, J. Ribeiro, Maicon Delarmelina, R. Fiorot, J. Carneiro, S. Greco
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引用次数: 3

Abstract

Three molecules containing morpholine, 1,4-naphthoquinone, 7-chloroquinoline and 1,3,5-triazine cores, scaffolds with recognized anti-corrosive activity, were synthesized and had their anticorrosive activity evaluated through potentiodynamic polarization and electrochemical impedance studies. Both studies were conducted in a simulated production water medium containing 150,000 mg·L-1 Cl- and 5 mg·L-1 S2-. Corrosion inhibition efficiency ranged from 67% - 86%, amongst which the naphthoquinone-containing derivative (compound 1) was the most effective. These compounds act through formation of a protective film on the surface of AISI 316 stainless steel. Investigation of the molecular properties of the prepared inhibitors by DFT calculations revealed that the LUMO energy and chemical hardness of the molecules can be directly correlated with their inhibition efficiency.
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含Morpholine、1,4-萘醌、7-氯喹啉和1,3,5-三嗪核心的新型分子杂化物的合成及缓蚀活性评价
合成了3种具有公认防腐活性的含啉、1,4-萘醌、7-氯喹啉和1,3,5-三嗪核心的分子支架,并通过动电位极化和电化学阻抗研究对其防腐活性进行了评价。这两项研究都是在含有150000 mg·L-1 Cl-和5mg·L-1 S2-的模拟生产水介质中进行的。缓蚀率为67% ~ 86%,其中含萘醌衍生物(化合物1)缓蚀率最高。这些化合物通过在AISI 316不锈钢表面形成保护膜而起作用。通过DFT计算对所制备的缓蚀剂的分子性质进行了研究,发现分子的LUMO能和化学硬度与缓蚀剂的缓蚀效率直接相关。
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