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首页> 外文期刊>Bulletin of Materials Science >Experimental and quantum chemical studies on corrosion inhibition performance of fluconazole in hydrochloric acid solution
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Experimental and quantum chemical studies on corrosion inhibition performance of fluconazole in hydrochloric acid solution

机译:盐酸氟康唑缓蚀性能的实验和量子化学研究

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The corrosion inhibition effect of fluconazole (FLU) was investigated on steel in 1 M hydrochloric acid solution. Weight loss measurements and atomic force microscope analysis were utilized to investigate the corrosion inhibition properties and film formation behaviour of FLU. Quantum chemical approach was also used to calculate some electronic properties of the molecule in neutral and protonated form in order to find any correlation between the inhibition effect and molecular structure of FLU molecule. The results showed that FLU can act as a good corrosion inhibitor for steel in hydrochloric acid solution at different temperatures and it can inhibit steel corrosion up to 95%. The adsorption followed the Langmuir isotherm and the thermodynamic parameters were also determined and discussed. Quantum chemical studies showed that in adsorption process of FLU molecules, nitrogen and oxygen atoms and benzene ring act as active centres.
机译:研究了氟康唑(FLU)在1 M盐酸溶液中对钢的缓蚀作用。利用失重测量和原子力显微镜分析来研究FLU的缓蚀性能和成膜行为。为了发现抑制作用与FLU分子的分子结构之间的关系,还使用了量子化学方法来计算中性和质子化形式的分子的某些电子性质。结果表明,FLU可以在不同温度下,作为盐酸溶液中钢的良好缓蚀剂,对钢的腐蚀抑制率高达95%。吸附遵循Langmuir等温线,并确定和讨论了热力学参数。量子化学研究表明,在FLU分子的吸附过程中,氮,氧原子和苯环是活性中心。

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