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A Seamless Grid-Based Interface for Mean-Field QM/MM Coupled with Efficient Solvation Free Energy Calculations

机译:用于平均场QM / MM的无缝网格接口,结合有效的溶剂化自由能计算

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Among various models that incorporate solvation effects into first-principles-based electronic structure theory such as density functional theory (DFT), the average solvent electrostatic potential/molecular dynamics (ASEP/MD) method is particularly advantageous. This method explicitly includes the nature of complicated solvent structures that is absent in implicit solvation methods. Because the ASEP/MD method treats only solvent molecule dynamics, it requires less computational cost than the conventional quantum mechanics/molecular mechanics (QM/MM) approaches. Herein, we present a real-space rectangular grid-based method to implement the mean-field QM/MM idea of ASEP/MD to plane-wave DFT, which is termed "DFT in classical explicit solvents", or DFT-CES. By employing a three-dimensional real-space grid as a communication medium, we can treat the electrostatic interactions between the DFT solute and the ASEP sampled from MD simulations in a seamless and straightforward manner. Moreover, we couple a fast and efficient free energy calculation method based on the two-phase thermodynamic (2PT) model with our DFT-CES method, which enables direct and simultaneous computation of the solvation free energies as well as the geometric and electronic responses of a solute of interest under the solvation effect. With the aid of DFT-CES/2PT, we investigate the solvation free energies and detailed solvation thermodynamics for 17 types of organic molecules, which show good agreement with the experimental data. We further compare our simulation results with previous theoretical models and assumptions made for the development of implicit solvation models. We anticipate that our proposed method, DFT-CES/2PT, will enable vast utilization of the ASEP/MD method for investigating solvation properties of materials by using periodic DFT calculations in the future.
机译:在将溶剂化效应结合到基于第一原理的电子结构理论(例如密度泛函理论(DFT))的各种模型中,平均溶剂静电势/分子动力学(ASEP / MD)方法尤其有利。该方法明确包含隐式溶剂化方法中不存在的复杂溶剂结构的性质。因为ASEP / MD方法仅处理溶剂分子动力学,所以与传统的量子力学/分子力学(QM / MM)方法相比,它需要的计算成本更低。在这里,我们提出一种基于实空间矩形网格的方法,以将ASEP / MD的平均场QM / MM思想实现为平面波DFT,称为“经典显式溶剂中的DFT”或DFT-CES。通过使用三维真实空间网格作为通信介质,我们可以以无缝,直接的方式处理DFT溶质与从MD模拟采样的ASEP之间的静电相互作用。此外,我们将基于两相热力学(2PT)模型的快速有效的自由能计算方法与我们的DFT-CES方法相结合,可以直接和同时计算溶剂化自由能以及分子的几何和电子响应在溶剂化作用下感兴趣的溶质。借助DFT-CES / 2PT,我们研究了17种有机分子的溶剂化自由能和详细的溶剂化热力学,与实验数据吻合良好。我们进一步将仿真结果与以前的理论模型以及为隐式溶剂化模型的开发所做的假设进行比较。我们预计,我们提出的方法DFT-CES / 2PT将在未来通过使用定期DFT计算来广泛利用ASEP / MD方法来研究材料的溶剂化性能。

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