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DFT Study of Azole Corrosion Inhibitors on Cu2O Model of Oxidized Copper Surfaces: II. Lateral Interactions and Thermodynamic Stability

机译:唑氧化抑制剂对氧化铜表面CU2O模型的DFT研究:II。横向相互作用和热力学稳定性

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摘要

The adsorption of imidazole, triazole, and tetrazole—used as simple models of azole corrosion inhibitors—on various Cu 2 O(111)- and Cu 2 O(110)-type surfaces was characterized using density functional theory (DFT) calculations with the focus on lateral intermolecular interactions and the thermodynamic stability of various adsorption structures. To this end, an ab initio thermodynamics approach was used to construct two-dimensional phase diagrams for all three molecules. The impact of van der Waals dispersion interactions on molecular adsorption bonding was also addressed. Lateral intermolecular interactions were found to be the most repulsive for imidazole and the least for tetrazole, for which they are usually even slightly attractive. Both non-dissociative and dissociative adsorption modes were considered and although dissociated molecules bind to surfaces more strongly, none of the considered structures that involve dissociated molecules appear on the phase diagrams. Our results show that the three azole molecules display a strong tendency to preferentially adsorb at reactive coordinatively unsaturated (CUS) Cu surface sites and stabilize them. According to the calculated phase diagrams for Cu 2 O(111)-type surfaces, the three azole molecules adsorb to specific CUS sites, designated as Cu CUS , under all conditions at which molecular adsorption is stable. This tentatively suggests that their corrosion inhibition capability may stem, at least in part, from their ability to passivate reactive surface sites. We further comment on a specific drawback due to neglect of configurational entropy that is usually utilized within the ab initio thermodynamics approach. We analyze the issue for Langmuir and Frumkin adsorption models and show that when configurational entropy is neglected, the ab initio thermodynamics approach is too hasty to predict phase-transition like behavior.
机译:咪唑,三唑,及吸附四唑作为唑类腐蚀抑制剂-各种铜2 O的简单模型(111) - 和Cu 2 O(110)型的表面使用与密度泛函理论(DFT)计算的特征在于着眼于横向分子间相互作用和各种吸附结构的热力学稳定性。为此,一个从头热力学方法用于构建二维相图对所有三种分子。范的DER分子吸附接合范德华相互作用分散的影响也被解决。横向分子间相互作用被认为是对咪唑最令人厌恶和至少四唑,为此,他们通常是稍微有吸引力。两个非解离型且解离吸附模式被认为是与解离虽然分子结合到表面上更加强烈,没有了涉及分子解离所考虑的结构的出现在相图。我们的研究结果表明,三个唑类分子的反应性配位不饱和(CUS)的Cu的表面位点显示的强烈倾向优先吸附和稳定它们。根据对Cu 2 O计算的相图(111)型的表面,三个唑分子吸附到特定网站CUS,指定为铜CUS,在该分子吸附是稳定的所有条件下。这姑且认为,其腐蚀抑制能力可以干,至少部分,从它们的钝化反应性表面位点的能力。我们在一个特定的缺点,由于通常是AB内利用热力学从头接近构型熵的忽视进一步的评论。我们分析Langmuir和弗兰坎吸附模型的问题,并表明,当构型熵被忽略,从头热力学的做法是过于草率预测样的行为相变。

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