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Atomistic Prediction of Sorption Free Energies of Cationic Aromatic Amines on Montmorillonite: A Linear Interaction Energy Method

机译:蒙脱土上阳离子芳香胺无吸附能的原子预测:线性相互作用能法

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Molecular dynamics (MD) simulations were performed to calculate free energies of sorption (ΔGsorb)of cationic aromatic amines to Ca-montmorillonite. We applied the linear interaction energy (LIE) method, well-established in the biochemistry field, to derive ΔGsorb. We obtained a mean average error of 0.3 kcal mol ~(-1) within the compound training set and an error of 0.41 kcal mol ~(-1) for a validation test set. We were able to reproduce absolute ΔGsorb values for a variety of compound structures, including the zwitterionic antibiotic oxytetracycline. MD simulations also provided atomistic level insights into the underlying driving forces that modulate sorption. Importantly, our approach provides a compelling alternative to polyparameter linear free energy relationship methods, which have shown limited success in capturing the sorption of ionogenic compounds with polar and/or charged moieties. We conclude that the LIE method can be used as a robust and tractable method to predict ΔGsorb within families of organic cations bound to aluminosilicate clay minerals.
机译:进行分子动力学(MD)模拟以计算阳离子芳香胺对钙蒙脱石的吸附自由能(ΔGsorb)。我们应用了在生物化学领域中公认的线性相互作用能(LIE)方法来得出ΔGsorb。我们在复合训练集中获得0.3 kcal mol〜(-1)的平均平均误差,而对于验证测试集则获得0.41 kcal mol〜(-1)的平均误差。我们能够重现包括两性离子抗生素土霉素在内的多种化合物结构的绝对ΔGsorb值。 MD模拟还提供了原子级的洞察力,以了解调节吸附的潜在驱动力。重要的是,我们的方法为多参数线性自由能关系方法提供了一种引人注目的替代方法,该方法在捕获具有极性和/或带电部分的离子化合物的吸附方面显示出有限的成功。我们得出的结论是,LIE方法可以用作预测与铝硅酸盐粘土矿物结合的有机阳离子家族中ΔGsorb的稳健且易于处理的方法。

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