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Molecular modeling study on inhibition performance of imidazolines for mild steel in CO_2 corrosion

机译:咪唑啉对低碳钢抑制CO_2腐蚀性能的分子模拟研究

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摘要

Corrosion inhibiting performance of 1 -hydroxyethyl-2-heptadecylimidazoline (A) and 1 -aminoethyl-2-heptadecylimidazoline (B) for mild steel was evaluated by combination of quantum chemistry calculation, molecular mechanics, and molecular dynamics simulation. The calculated results by quantum chemistry method demonstrated that frontier orbitals of A and B molecules are mainly located on imidazoline rings, and molecule B possesses higher reactivity than molecule A. The calculated results by molecular mechanics and molecular dynamics simulation presented that these two inhibitor molecules could form dense and high-coverage membranes to prevent diffusion of reactive corrosive species to metal surface. Fuerthermore, the adsorption energy, cohesive energy, and adsorption angle demonstrated that the binding affinity and stability of B membrane was remarkably greater than that of A, which indicated that B had better inhibition performance in CO_2 corrosion. The calculated results were well accorded with previous reported experimental results. These researches implied that molecular modeling might be an effective approach to assess inhibition performance, which has potential application in design of new inhibitors.
机译:通过结合量子化学计算,分子力学和分子动力学模拟,评价了1-羟乙基-2-庚基咪唑啉(A)和1-氨基乙基-2-庚基咪唑啉(B)对低碳钢的缓蚀性能。量子化学方法的计算结果表明,A和B分子的前沿轨道主要位于咪唑啉环上,并且分子B的反应性高于分子A。通过分子力学和分子动力学模拟的计算结果表明,这两种抑制剂分子可以形成致密且高覆盖率的膜,以防止反应性腐蚀物质扩散到金属表面。此外,吸附能,内聚能和吸附角表明,B膜的结合亲和力和稳定性明显高于A,表明B在CO_2腐蚀中具有更好的抑制性能。计算结果与先前报道的实验结果非常吻合。这些研究表明,分子建模可能是评估抑制性能的有效方法,在新型抑制剂的设计中具有潜在的应用前景。

著录项

  • 来源
    《Applied Surface Science》 |2010年第14期|p.4729-4733|共5页
  • 作者单位

    College of Physics Science and Technology, China University of Petroleum, Beier Road 271, Dongying, Shandong 257061, PR China;

    College of Petroleum Engineering, China University of Petroleum, Qingdao, Shandong 266555, PR China;

    rnCollege of Physics Science and Technology, China University of Petroleum, Beier Road 271, Dongying, Shandong 257061, PR China;

    College of Physics Science and Technology, China University of Petroleum, Beier Road 271, Dongying, Shandong 257061, PR China;

    College of Physics Science and Technology, China University of Petroleum, Beier Road 271, Dongying, Shandong 257061, PR China;

    College of Physics Science and Technology, China University of Petroleum, Beier Road 271, Dongying, Shandong 257061, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    imidazoline; corrosion inhibitor; molecular modeling;

    机译:咪唑啉缓蚀剂;分子模拟;
  • 入库时间 2022-08-18 03:07:29

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