氯化2,3,5-三苯基-2氢-四唑及2,4,6-三(2-吡啶基)-s-三嗪在HCl中对碳钢的缓蚀作用(英文)

来源 :Chinese Journal of Chemical Engineering | 被引量 : 0次 | 上传用户:deadhorse
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Electrochemical measurement, quantum chemical method, and scanning electron microscopy (SEM) were performed to investigate the inhibitive effect of 2,3,5-triphenyl-2H-tetrazolium chloride (TTC) and 2,4,6-tri(2-pyridyl) -s-triazine(TPT) on the corrosion of mild steel in 1mol·L-1 HCl at room temperature. Impedance spectroscopy measurement showed that the polarization resistance increased and that double layer capacitance de- creased with the increase in the inhibitive concentration, and the results of potentiodynamic polarization showed that the inhibitors suppressed both cathodic and anodic processes of steel corrosion without change in the mecha- nism. Higher the orbital density distribution strength of the lowest unoccupied molecular orbital, higher is the molecule dipole, and lower energy gap between the energy of the highest occupied molecular orbital and the energy of the lowest unoccupied molecular orbital resulted in higher inhibitory efficiency. The results of SEM analysis showed that the metal was protected from aggressive corrosion by the addition of TTC and TPT. Electrochemical measurement, quantum chemical method, and scanning electron microscopy (SEM) were performed to investigate the inhibititive effect of 2,3,5-triphenyl-2H-tetrazolium chloride (TTC) and 2,4,6-tri -s-triazine (TPT) on the corrosion of mild steel in 1 mol·L-1 HCl at room temperature. Impedance spectroscopy measurement showed that the polarization resistance increased and that double layer capacitance de- creased with the increase in the inhibitive concentration, and the results of potentiodynamic polarization showed that the inhibitors suppressed both cathodic and anodic processes of steel corrosion without change in the mecha- nism. Higher the orbital density distribution strength of the lowest unoccupied molecular orbital, higher is the molecule dipole, and lower energy gap between the energy of the highest committed molecular orbital and the energy of the lowest unoccupied molecular orbital resulted in higher inhibitory efficiency. The results of SEM analysis show ed that the metal was protected from aggressive corrosion by the addition of TTC and TPT.
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