Computational Study of Some Heterocyclic Compounds as Anti-corrosion Agents for Aluminum using DFT Method

Manal Ahmed Erteeb, F. Mahmoud, Abdulsatar S. Kareem
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引用次数: 2

Abstract

DFT Calculations were performed on Oxazole, Pyrazole, Imidazole, Isoxazole, Thiazole and Isothiazole as corrosion inhibitors for Al  with full optimization of geometries in DFT-B3LYP/6-31 G*Level (d, P( to find a relation between the molecular structure and corrosion inhibition. The electronic properties such as the energy of the highest molecular orbital that is occupied (HOMO), the energy of lowest unoccupied orbital (LUMO), the energy gap (LUMO–HOMO), quantum chemical parameters such as hardness, softness, the fraction of the electron transferred, and the electrophilicity index. In order to know the relationship of molecular structure and corrosion inhibition on surface of the quantum chemical parameters, boundary orbital's isothiazole has  been  found  the highest anti-corrosion efficiency as compared to other. 
几种杂环化合物作为铝防腐剂的DFT计算研究
在DFT- b3lyp /6-31 G*Level (d, P)中充分优化几何结构,对恶唑、吡唑、咪唑、异恶唑、噻唑和异噻唑作为Al的缓蚀剂进行DFT计算,找出分子结构与缓蚀作用之间的关系。电子性质,如占据的最高分子轨道的能量(HOMO),最低未占据轨道的能量(LUMO),能隙(LUMO - HOMO),量子化学参数,如硬度,柔软度,转移电子的分数,亲电性指数。为了了解分子结构与表面量子化学参数的缓蚀关系,边界轨道的异噻唑被发现具有最高的防腐效率。
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