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Evaluation of density functional theory methods for studying chemisorption of arsenite on ferric hydroxides

机译:用于研究砷在氢氧化铁上化学吸附的密度泛函理论方法的评价

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Understanding adsorption of arsenic on ferric hydroxide surfaces is important for predicting the fate of arsenic in the environment and in designing treatment systems for removing arsenic from potable water. This research investigated the binding of arsenite to ferric hydroxide clusters using several density functional theory methods. Comparison of calculated and experimentally measured As-O and As-Fe bond distances indicated that As(III)) forms both bidentate and monodentante corner-sharing complexes with Fe(III) octahedra. Edge-sharing As(Ill) complexes were less energetically favorable and had As-O and As-Fe distances that deviated more from experimentally measured values than corner-sharing complexes. The hydrated bidentate complex was the most energetically favorable in the vacuum phase, while the monodentate complex was most favored in the aqueous phase. Structures optimized using the Harris and Perdew-Wang local functionals were close to both experimental data and structures optimized using the nonlocal Becke-Lee-Yang-Parr (BLYP) functional. Binding energies calculated with the gradient-corrected BLYP functional were only weakly dependent on the method used for geometry optimization. The approach of using low-level structures coupled with higher level single-point energies was found to reduce computational time by 75% with no loss in accuracy of the computed binding energies.
机译:了解砷在氢氧化铁表面上的吸附对于预测环境中砷的命运以及设计用于从饮用水中去除砷的处理系统非常重要。这项研究使用几种密度泛函理论方法研究了砷与氢氧化铁簇的结合。计算和实验测量的As-O和As-Fe键距的比较表明,As(III)与Fe(III)八面体同时形成了双齿和单齿角共享复合体。边缘共享的As(III)配合物在能量上不太有利,并且与角落共享的配合物相比,As-O和As-Fe距离与实验测量值的偏差更大。在真空相中,水合双齿络合物在能量上最有利,而在水相中单齿络合物最受好评。使用Harris和Perdew-Wang局部功能优化的结构与实验数据和使用非局部Becke-Lee-Yang-Parr(BLYP)功能优化的结构均接近。用梯度校正的BLYP官能团计算的结合能仅在很小程度上取决于用于几何优化的方法。发现使用低级结构与高级别单点能量耦合的方法可将计算时间减少75%,而不会降低所计算的结合能的准确性。

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