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Mechanistic studies of the influence of halogen substituents on the corrosion inhibitive efficiency of selected imidazole molecules: A synergistic computational and experimental approach

机译:卤素取代基对所选咪唑分子缓蚀效率影响的机理研究:一种协同的计算和实验方法

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Adsorption behavior and corrosion inhibition mechanism of imidazole and its C2-halogenated analogues (with the halogen atoms being Cl, Br or I) on Fe(1 0 0) surface were investigated by DFT periodic slab calculations and electrochemical techniques. DFT calculations revealed that C2-halogenated imidazoles adopt the tilled conformation on Fe surface with a significantly lengthened C-halogen bond and readily undergo facile dissociation at the halo-substitution with calculated adsorption energies -3.95, -3.76 and -3.48 eV for 2-I-Imz, 2-Br-Imz and 2-Cl-Imz, respectively. Electrochemical evaluations supported with surface characterization studies showed that the inhibitor molecules adsorb onto mild steel with 2-I-Imz having the highest inhibition efficiency of 83.5%. The trend of observed inhibition efficiencies correlates with adsorption energies and kinetic behavior predicted by the MD approach. The strength of adsorption in the order I Br Cl. The present study therefore provides a thorough mechanistic understanding of the role halogen substituents could play on the corrosion inhibitive performance of small organic systems.
机译:通过DFT周期平板计算和电化学技术研究了咪唑及其碳卤代类似物(卤素原子为Cl,Br或I)在Fe(1 0 0)表面上的吸附行为和缓蚀机理。 DFT计算表明,C2卤代咪唑在Fe表面采用分立的构象,具有显着延长的C卤键,并且易于在卤素取代处容易地解离,计算出的2-I的吸附能为-3.95,-3.76和-3.48 eV -Imz,2-Br-Imz和2-Cl-Imz。表面特性研究支持的电化学评估表明,抑制剂分子以2-I-Imz吸附到低碳钢上,其最高抑制效率为83.5%。观察到的抑制效率的趋势与MD方法预测的吸附能和动力学行为相关。吸附强度的顺序为I> Br> Cl。因此,本研究提供了对卤素取代基对小型有机体系的缓蚀性能所起的作用的详尽的机理理解。

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