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Predictive model of 2-cyclohexylthiophene for corrosion inhibition in mild steel using computational method

机译:计算方法预测2-环己基噻吩缓蚀低碳钢的模型

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摘要

Corrosion inhibition activity of 2-cyclohexylthiophene (2CHT) for mild steel in acidic media was predicted using QSAR tool. The model used two descriptors namely; Moran autocorrelation of lag4 weighted by mass (MATS4M) which explained the linearity and branching of the compounds and largest eigen values n3 of burden matrix weighted by mass (SPMAX3-Bh(m)) describes the nature and size of the neighboring atom. The modeling results revealed the potential of the compounds as a good corrosion inhibitor with percentage inhibition efficiency (%IE) of 76.5%. Quantum chemical calculation using DFT with 6-311G++(d,p) basis was used to evaluate the performance of the predicted compound as corrosion inhibitor by quantum chemical parameters such as EHUMO, ELUMO, Energy gap (Egap), hardness (?), softness (S), dipole moment (µ), electronegativity (X), electron affinity (A), ionization energy (I) and total energy (TE). The results obtained from quantum chemical parameters were found to be consistent with predicted result.
机译:使用QSAR工具预测了2-环己基噻吩(2CHT)在酸性介质中对低碳钢的腐蚀抑制活性。该模型使用了两个描述符:按质量加权的lag4(MATS4M)的Moran自相关解释了化合物的线性和支化以及按质量加权的负担矩阵的最大特征值n3(SPMAX3-Bh(m))描述了相邻原子的性质和大小。模拟结果表明,该化合物具有良好的缓蚀作用,其抑制效率百分比(%IE)为76.5%。使用基于DFT和6-311G ++(d,p)的量子化学计算,通过EHUMO,ELUMO,能隙(Egap),硬度(η),柔软度等量子化学参数,评估了所预测化合物作为缓蚀剂的性能。 (S),偶极矩(μ),电负性(X),电子亲和力(A),电离能(I)和总能(TE)。发现从量子化学参数获得的结果与预测结果一致。

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