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首页> 外文期刊>The Journal of Chemical Physics >An extended hybrid density functional(X3LYP)with improved descriptions of nonbond interactions and thermodynamic properties of molecular systems
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An extended hybrid density functional(X3LYP)with improved descriptions of nonbond interactions and thermodynamic properties of molecular systems

机译:扩展的杂化密度泛函(X3LYP),具有对分子系统的非键相互作用和热力学性质的改进描述

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摘要

We derive here the form for the exact exchange energy density for a density that decays with Gaussian-type behavior at long range.This functional is intermediate between the B88 and the PW91 exchange functionals.Using this modified functional to match the form expected for Gaussian densities,we propose the X3LYP extended functional.We find that X3LYP significantly outperforms Becke three parameter Lee-Yang-Parr(B3LYP)for describing van der Waals and hydrogen bond interactions,while performing slightly better than B3LYP for predicting heats of formation,ionization potentials,electron affinities,proton affinities,and total atomic energies as validated with the extended G2 set of atoms and molecules.Thus X3LYP greatly enlarges the field of applications for density functional theory.In particular the success of X3LYP in describing the water dimer(with R_e and D_e within the error bars of the most accurate determinations)makes it an excellent candidate for predicting accurate ligand-protein and ligand-DNA interactions.
机译:我们在此推导出一种精确交换能密度的形式,该密度随高斯型行为在远距离范围内衰减,该函数介于B88和PW91交换函数之间,使用此修改的函数以匹配高斯密度的预期形式因此,我们提出了X3LYP扩展功能。我们发现X3LYP在描述范德华力和氢键相互作用方面明显优于Becke的三个参数Lee-Yang-Parr(B3LYP),而在预测形成热,电离势,电子亲和力,质子亲和力和总原子能通过扩展的G2原子和分子集得到验证。因此X3LYP极大地扩展了密度泛函理论的应用领域。特别是X3LYP在描述水二聚体(R_e和D_e在最精确测定的误差条内)使其成为预测准确配体蛋白的极佳候选者和配体-DNA相互作用。

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