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紫苏籽提取物作为Q235碳钢绿色缓蚀剂的缓蚀效果及作用机理阐释

Inhibition Effect and Mechanism Explanation of Perilla Seed Extract as a Green Corrosion Inhibitor on Q235 Carbon Steel.

作者信息

Li Yu, Xu Wenqiang, Lai Jiayu, Qiang Sheng

机构信息

College of Water Conservancy and Hydropower, Hohai University, Nanjing 210098, China.

School of Civil Engineering and Architecture, Wuhan Institute of Technology, Wuhan 430079, China.

出版信息

Materials (Basel). 2022 Aug 5;15(15):5394. doi: 10.3390/ma15155394.

Abstract

The development of environmentally friendly corrosion inhibitors has become a research hotspot. Aiming at the potential corrosion inhibition effect of perilla seed extract on Q235 carbon steel, the corrosion inhibition effect was quantitatively evaluated by various research methods, and the effective corrosion inhibition composition and mechanism were discussed. The research methods include potentiodynamic polarization curve method, HPLC-MS, FT-IR, XPS and chemical calculation. The experimental results show that the inhibitor prepared from perilla seed extract is a mixed inhibitor, and its adsorption behavior accords with Langmuir adsorption theory and its adsorption free energy is -22.70 kJ/mol. Combined with the experimental results and theoretical calculation, the effective corrosion inhibiting components are luteolin and apigenin. Theoretical calculation shows that both of them are adsorbed parallel to the surface of carbon steel to form thin films. The adsorption mechanism is that carbonyl O atoms in luteolin and apigenin hybridize with the 3 d empty orbit of Fe. From the point of view of quantum chemistry, the smaller the HOMO value and the energy gap value, the better the adsorption of corrosion inhibitor on the surface of carbon steel. From the point of view of molecular dynamics simulation, the greater the absolute value of adsorption energy, the better the adsorption of corrosion inhibitor on carbon steel surface.

摘要

环保型缓蚀剂的开发已成为研究热点。针对紫苏籽提取物对Q235碳钢的潜在缓蚀作用,采用多种研究方法对其缓蚀效果进行了定量评价,并探讨了有效的缓蚀成分及作用机理。研究方法包括动电位极化曲线法、高效液相色谱 - 质谱联用(HPLC-MS)、傅里叶变换红外光谱(FT-IR)、X射线光电子能谱(XPS)以及化学计算。实验结果表明,由紫苏籽提取物制备的缓蚀剂为混合型缓蚀剂,其吸附行为符合朗缪尔吸附理论,吸附自由能为 -22.70 kJ/mol。结合实验结果与理论计算,有效的缓蚀成分是木犀草素和芹菜素。理论计算表明,它们均平行于碳钢表面吸附形成薄膜。吸附机理是木犀草素和芹菜素中的羰基O原子与Fe的3d空轨道杂化。从量子化学角度来看,最高占据分子轨道(HOMO)值和能隙值越小,缓蚀剂在碳钢表面的吸附效果越好。从分子动力学模拟角度来看,吸附能绝对值越大,缓蚀剂在碳钢表面的吸附效果越好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0493/9369877/6eef5198cde5/materials-15-05394-g001.jpg

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