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Corrosion inhibition of N80 steel in 15% HCl by pyrazolone derivatives: electrochemical, surface and quantum chemical studies

机译:通过吡唑酮衍生物在15%HCl中腐蚀N80钢的腐蚀抑制:电化学,表面和量子化学研究

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The corrosion protection of N80 steel in 15% HCl by two pyrazolone derivatives namely 2-(3-amino-5-oxo-4,5-dihydro-1 H -pyrazol-1-yl)( p -tolyl)methyl)malononitrile (PZ-1) and 2-((3-amino-5-oxo-4,5-dihydro-1 H -pyrazol-1-yl)(phenyl)methyl)malononitrile (PZ-2) has been investigated by using gravimetric, electrochemical and quantum chemical studies. The observed results reveal that PZ-1 is a better inhibitor than PZ-2. Tafel polarization showed that PZs are mixed type inhibitors but dominantly affect the cathodic reaction. Both inhibitors were found to obey the Langmuir adsorption isotherm. Scanning electron microscopy (SEM) and scanning electrochemical microscopy (SECM) images support the protection of the N80 steel in the presence of the PZs. Quantum chemical study reveals that both inhibitors have a tendency to get protonated and this result supports the experimental observations.
机译:通过两个吡唑酮衍生物在15%HCl中腐蚀N80钢的腐蚀保护,即2-(3-氨基-5-氧代-4,5-二氢-1H-丙唑-1-基)(p-丙基)甲基)丙二腈(通过使用重量测定研究了PZ-1)和2 - ((3-氨基-5-氧代-4,5-二氢-1-H-丙唑-1-基)(PZ-2),研究了丙二腈(PZ-2),电化学和量子化学研究。所观察结果表明,PZ-1是比PZ-2更好的抑制剂。 Tafel偏振显示,PZ是混合式抑制剂,但主要影响阴极反应。发现这两个抑制剂都遵守朗米尔吸附等温线。扫描电子显微镜(SEM)和扫描电化学显微镜(SECM)图像在PZS存在下支持N80钢的保护。量子化学研究表明,两种抑制剂都有趋势得到质子化,并且该结果支持实验观察结果。

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