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首页> 外文期刊>Journal of molecular modeling >Understanding the anticorrosive mechanism of a cross-linked supramolecular polymer for mild steel in the condensate water: comprehensive experimental, molecular docking, and molecular dynamics investigations
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Understanding the anticorrosive mechanism of a cross-linked supramolecular polymer for mild steel in the condensate water: comprehensive experimental, molecular docking, and molecular dynamics investigations

机译:了解冷凝水中有轻钢的交联超分子聚合物的防腐机制:综合实验,分子对接和分子动力学研究

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摘要

A supramolecular polymer (CDP-DA) was prepared through the crosslinking reaction among the assembled complexes (CDDA) based on beta -cyclodextrin (beta -CyD) and octadecylamine (ODA). The structural properties of CDP-DA were clarified by experimental techniques such as Fourier transform infrared spectroscopy, X-ray diffraction, scanning electron microscope, and thermal analysis. Based on the results of molecular docking, the crosslinking unit, CDDA, in the CDP-DA structure favors to exhibit the configuration that narrow rims of two host compounds (beta -CyD) are opposite to each other leaving the amino group of ODA outside the host cavity. The corrosion inhibition performance of CDP-DA for mild steel in industrial condensate water was evaluated by electrochemical measurements and surface analyses, the mechanism of which was disclosed by molecular dynamics simulations in the aspects of adsorption equilibrium and ions diffusion models. The results of electrochemical tests indicate that CDP-DA effectively retards the anodic and cathodic reactions and improves the interfacial charge transfer resistance of mild steel in condensate water, which can be categorized as the mixed-type inhibitor. Surface analyses reveal that CDP-DA adsorbs on the steel surface in the integral form showing a monolayer nature, which is consolidated by molecular dynamics simulations. The diffusion behavior of in situ ions in the adsorbed layer is prominently suppressed as compared with those in bulk solution. The robust barrier layer and the mitigated diffusion of ions may contribute to the effective inhibition for CDP-DA against steel deterioration in the condensate water.Anticorrosive mechanism of a cross-linked supramolecular polymer for mild steel in the condensate water
机译:通过基于β-环糊精(Beta -cyd)和十八烷基胺(ODA)的组装络合物(CDDA)中的交联反应来制备超分子聚合物(CDP-DA)。通过实验技术如傅里叶变换红外光谱,X射线衍射,扫描电子显微镜和热分析,通过实验技术阐明了CDP-DA的结构性能。基于分子对接的结果,CDP-DA结构中的交联单元CDDA在CDP-DA结构上表现出窄的两个宿主化合物(β-CYD)的构型与彼此相反的构型,使氨基驻留在外面的ODA主持人。通过电化学测量和表面分析评价了在工业凝析水中的CDP-DA用于温和钢的腐蚀抑制性能,其在吸附平衡和离子扩散模型方面的分子动力学模拟公开了该机制。电化学试验结果表明,CDP-DA有效地延迟了阳极和阴极反应,并改善了冷凝水中低碳钢的界面电荷转移性,可作为混合型抑制剂。表面分析显示CDP-DA在钢表面上以整体形式的钢表面显示,显示单层性质,通过分子动力学模拟固结。与本体溶液中的那些相比,突出地抑制了吸附层中的原位离子的扩散行为。强大的阻挡层和离子的缓解扩散可能有助于CDP-DA抵抗冷凝水中的钢劣化的有效抑制。冷凝水中的微钢的交联超分子聚合物的纳米腐蚀机理

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