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A combined effective fragment potential_fragment molecular orbital method. I. The energy expression and initial applications

机译:组合有效片段电势片段分子轨道方法。一,能量表达及初步应用

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摘要

The effective fragment potential (EFP) method,a model potential for treating solvent effects and other intermolecular interactions, is interfaced with an electronic structure method, the fragment molecular orbital (FMO) method, that is able to retain high accuracy for ab initio calculations on large molecular systems. The accuracy of the total energies in this novel combined FMO/EFP method is assessed by comparisons with the conventional quantum mechanics (QM)/EFP method. The test cases are water clusters, a peptide, and a dianionic protein (treated with full QM and FMO) combined with water clusters (treated with EFP) at the RHF, B3LYP, arid MP2 levels of theory. The basis sets employed range from minimal to augmented double zeta plus polarization. The energy differences between FMO/EFP and the conventional QM/EFP methods are within "chemical accuracy" (1 kcal /mol=4 kJ/ mol).
机译:有效片段势(EFP)方法是一种用于处理溶剂效应和其他分子间相互作用的模型势,它与电子结构方法(片段分子轨道(FMO)方法)相连接,该方法能够从头算计算中保持较高的准确性。大分子系统。通过与常规量子力学(QM)/ EFP方法进行比较,评估了这种新颖的组合FMO / EFP方法中总能量的准确性。测试案例是理论值为RHF,B3LYP和MP2的水簇,肽和双阴离子蛋白(用完全QM和FMO处理)结合水簇(用EFP处理)。使用的基集范围从最小到增强的双重zeta加极化。 FMO / EFP与常规QM / EFP方法之间的能量差在“化学精度”之内(1 kcal / mol = 4 kJ / mol)。

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