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首页> 外文期刊>RSC Advances >2,4-Diamino-5-(phenylthio)-5H-chromeno [2,3-b] pyridine-3-carbonitriles as green and effective corrosion inhibitors: gravimetric, electrochemical, surface morphology and theoretical studies
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2,4-Diamino-5-(phenylthio)-5H-chromeno [2,3-b] pyridine-3-carbonitriles as green and effective corrosion inhibitors: gravimetric, electrochemical, surface morphology and theoretical studies

机译:2,4-二氨基-5-(苯硫基)-5H-chromeno [2,3-b]吡啶-3-腈作为绿色和有效的缓蚀剂:重量,电化学,表面形态和理论研究

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摘要

The inhibition of mild steel corrosion in 1 M HCl by three newly synthesized 2,4-diamino-5-(phenylthio)-5H-chromeno[2,3-b]pyridine-3-carbonitriles (DHPCs) namely, 2,4-diamino-7-nitro-5-(phenylthio)-5H-chromeno[2,3-b]pyridine-3-carbonitrile (DHPC-1), 2,4-diamino-5-(phenylthio)-5H-chromeno[2,3-b]pyridine-3-carbonitrile (DHPC-2) and 2,4-diamino-7-hydroxy-5-(phenylthio)-5H-chromeno[2,3-b]pyridine-3-carbonitrile (DHPC-3) was studied using weight loss method, electrochemical techniques, surface morphology (SEM, AFM) studies and theoretical (quantum chemical calculations and molecular dynamic simulation) methods. The weight loss and electrochemical measurements showed that the inhibition efficiency increases with increasing inhibitor concentration and the relative trend of inhibition performance is DHPC-3 > DHPC-2 > DHPC-1. A potentiodynamic polarization study reveals that the investigated DHPCs act as mixed type inhibitors. The adsorption of the DHPCs on the mild steel surface obeys the Langmuir adsorption isotherm and involves both physisorption and chemisorption modes. The presence of the electron releasing -OH group at position seven on the chromenopyridine ring is considered to be responsible for the highest inhibition efficiency of DHPC-3 among the studied compounds. Whereas the presence of the electron withdrawing nitro (-NO2) group at position seven on the chromenopyridine ring is responsible for the lowest inhibitive strength of DHPC-1. Quantum chemical calculations and molecular dynamic simulation studies were undertaken to provide mechanistic insight into the roles of the different substituents (-OH and -NO2) on the corrosion inhibition behavior of the studied inhibitors.
机译:三种新合成的2,4-二氨基-5-(苯硫基)-5H-铬[2,3-b]吡啶-3-甲腈(DHPC)对1 M HCl中低碳钢腐蚀的抑制作用二氨基-7-硝基-5-(苯硫基)-5H-chromeno [2,3-b]吡啶-3-腈(DHPC-1),2,4-二氨基-5-(苯硫基)-5H-chromeno [2 ,3-b]吡啶-3-甲腈(DHPC-2)和2,4-二氨基-7-羟基-5-(苯硫基)-5H-chromeno [2,3-b]吡啶-3-甲腈(DHPC- 3)研究了使用失重法,电化学技术,表面形态学(SEM,AFM)的研究方法和理论(量子化学计算和分子动力学模拟)方法。失重和电化学测量结果表明,随着抑制剂浓度的增加,抑制效率增加,抑制性能的相对趋势为DHPC-3> DHPC-2> DHPC-1。电位动力学极化研究表明,所研究的DHPC作为混合型抑制剂。 DHPC在低碳钢表面上的吸附遵循Langmuir吸附等温线,并涉及物理吸附和化学吸附模式。在研究的化合物中,铬吡啶吡啶环上第7位的电子释放-OH基团的存在被认为是DHPC-3最高抑制效率的原因。铬基吡啶环上第7位的吸电子硝基(-NO2)基团是DHPC-1最低抑制强度的原因。进行了量子化学计算和分子动力学模拟研究,以提供有关不同取代基(-OH和-NO2)对所研究抑制剂的缓蚀性能的作用的机械机理见解。

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