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Evaluation of Corrosion Protection Performance of New Polymer Composite Coatings on Carbon Steel in Acid Medium by Electrodeposition Methods

机译:电沉积方法评价新型聚合物复合涂层对碳钢碳钢腐蚀性能

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In this research, electrodeposition procedure was utilized for the synthesis of a new composite polymer: N-methylpyrrole–Triton–X100/N, N,N-diethylaniline (NMPY-TRX100/NNDEA) used as a coating on carbon steel type OL 37 electrode for corrosion protection. The surfactant Triton–X100, a dopant ion utilized throughout the process of electropolymerization, had a significant impact on the corrosion protection of this composite by impeding the penetration of corrosive ions. PNMPY-TRX100/PNNDEA coatings were successfully realized on the OL37 substrate by a galvanostatic method of synthesis using the solutions 0.1 M NNDEA, 0.1 M MPY, 0.03 M TRX-100, and 0.3 M H2C2O4, at varied current densities (3 mA/cm2, 5 mA/cm2 and 8 mA/cm2) in different molar ratios (1:1, 1:5, 3:2 and 5:1). The deposition was performed for 20 and 30 min. The polymeric composite coatings were characterized electrochemically, spectroscopically, and morphologically by cyclic voltammetry, Fourier transform infrared spectroscopy, and scanning electron microscopy methods. Corrosion protection performance of PNMPY-TRX100/PNNDEA-coated OL 37 was examined through potentiostatic and potentiodynamic polarization, open circuit potential measurements, and electrochemical impedance spectroscopy procedures in 0.5 M H2SO4 media. The corrosion rate of PNPMPY-TRX100/PNNDEA-coated OL 37 was denoted to be around nine times less than that of an uncoated electrode. The corrosion protection yield of the coating was more than 90%. The best effectiveness was realized for PNMPY-TRX-100/PNNDEA by electrodeposition at 5 mA/cm2 current density applied in molar ratios of 5:1 and 3:2, and at 8 mA/cm2 current densities applied in molar ratio 5:1. The outcomes of the corrosion experiments revealed that PNMPY-TRX-100/PNNDEA coatings provide a good anticorrosion protection of OL 37 in corrosive solutions.
机译:在该研究中,电沉积程序用于合成新的复合聚合物:N-甲基吡咯 - Triton-X100 / N,N,N-二乙基苯胺(NMPY-TRX100 / NNDEA)用作碳钢型OL 37电极上的涂层用于腐蚀保护。表面活性剂Triton-X100是在整个电池过程中使用的掺杂剂离子,通过阻碍腐蚀离子的渗透来对该复合材料的腐蚀保护产生显着影响。通过使用溶液0.1M nndea,0.1M MPY,0.03M TRX-100和0.3M H2C2O4,在不同电流密度(3 mA / cm2不同摩尔比(1:1,1:5,3:2和5:1)的5mA / cm2和8mA / cm2)。沉积进行20和30分钟。通过循环伏安法,傅里叶变换红外光谱和扫描电子显微镜方法表征聚合物复合涂层。通过在0.5MH2SO4培养基中通过电位和电位偏振,开路电位测量和电化学阻抗光谱方法检查PNMPY-TRX100 / PNNNDEA涂覆的OL 37的腐蚀保护性能。将PNPMPY-TRX100 / PNNDEA涂覆的OL 37的腐蚀速率表示为比未涂覆电极的九倍左右。涂层的腐蚀保护产率大于90%。通过电沉积在施加5:1和3:2的摩尔比的5mA / cm2电流密度下通过电沉积来实现最佳效果,在5:1和3:2中,在摩尔比下施加的8mA / cm2电流密度5:1 。腐蚀实验的结果表明,PNMPY-TRX-100 / PNNNDEA涂层在腐蚀性溶液中提供了OL 37的良好防腐保护。

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