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Epoxy pre-polymers as new and effective materials for corrosion inhibition of carbon steel in acidic medium: Computational and experimental studies

机译:环氧预聚物作为在酸性介质中抑制碳钢腐蚀的新型有效材料:计算和实验研究

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摘要

Present study is designed for the synthesis, characterization and corrosion inhibition behavior of two diamine aromatic epoxy pre-polymers (DAEPs) namely, N1,N1,N2,N2-tetrakis (oxiran-2-ylmethyl) benzene-1,2-diamine (DAEP1) and 4-methyl-N1,N1,N2,N2-tetrakis (oxiran-2-ylmethyl) benzene-1,2-diamine (DAEP2) for carbon steel corrosion in acidic medium. Synthesized DAEPs were characterized using spectral (Nuclear magnetic resonance (1H NMR) and Fourier transform infrared-attenuated total reflection (FTIR-ATR)) techniques. Viscosity studies carried out at four different temperatures (20–80 °C) increase in temperature causes significant reduction in their viscosities. The anticorrosive properties of DAEPs differing in the nature of substituents, for carbon steel corrosion in 1 M HCl solution was evaluated using several experimental and computational techniques. Both experimental and computational studies showed that inhibitor (DAEP2) that contains electron releasing methyl (-CH3) showed higher protectiveness as compared to the inhibitor (DAEP1) without substituent (-H). Electrochemical results demonstrate that DAEPs act as reasonably good inhibitors for carbon steel in 1 M HCl medium and their effectiveness followed the sequence: DAEP2 (92.9%) > DAEP1 (91.7%). The PDP results show that the diamine aromatic epoxy pre-polymers molecules (DAEPs) act as mixed type inhibitors. Electrochemical study was also supported using scanning electron microscopy (SEM) method were significant improvement in the surface morphology of inhibited (by DAEPs) metallic specimens was obtained. Results derived from computational density functional theory (DFT) and molecular dynamics (MD) simulationsand studies were consistent with the experimental results derived from SEM, EIS and PDP electrochemical studies. Adsorption of the DAEPs obeyed the Langmuir adsorption isotherm model.
机译:本研究旨在设计用于两种二胺芳族环氧预聚物(DAEPs)N 1 ,N 1 ,N 的合成,表征和缓蚀性能2 ,N 2 -四(环氧乙烷-2-基甲基)苯-1,2-二胺(DAEP1)和4-甲基-N 1 ,N碳钢 1 ,N 2 ,N 2 -四(环氧乙烷-2-基甲基)苯1,2-二胺(DAEP2)在酸性介质中腐蚀。利用光谱技术(核磁共振( 1 H NMR)和傅立叶变换红外衰减全反射(FTIR-ATR))对合成的DAEP进行表征。在四个不同温度(20–80 C)下进行的粘度研究导致温度显着降低。使用几种实验和计算技术评估了在取代基性质方面不同的DAEP的抗腐蚀性能,它们对1 propertiesM HCl溶液中的碳钢腐蚀。实验和计算研究均表明,与不具有取代基(-H)的抑制剂(DAEP1)相比,含有释放电子的甲基(-CH3)的抑制剂(DAEP2)具有更高的保护性。电化学结果表明,DAEP在1 M HCl介质中可作为碳钢的良好抑制剂,其有效性遵循以下顺序:DAEP2(92.9%)→DAEP1(91.7%)。 PDP结果表明,二胺芳族环氧预聚物分子(DAEP)充当混合型抑制剂。使用扫描电子显微镜(SEM)方法也支持了电化学研究,获得了被抑制的金属样品(通过DAEPs)的表面形态的显着改善。计算密度泛函理论(DFT)和分子动力学(MD)模拟和研究得出的结果与SEM,EIS和PDP电化学研究得出的实验结果一致。 DAEP的吸附遵循Langmuir吸附等温线模型。

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