首页> 外文期刊>Journal of chemical theory and computation: JCTC >MN15-L: A New Local Exchange-Correlation Functional for Kohn-Sham Density Functional Theory with Broad Accuracy for Atoms, Molecules, and Solids
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MN15-L: A New Local Exchange-Correlation Functional for Kohn-Sham Density Functional Theory with Broad Accuracy for Atoms, Molecules, and Solids

机译:MN15-L:Kohn-Sham密度泛函理论的一种新的局部交换相关泛函,对于原子,分子和固体具有广泛的准确性

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Kohn-Sham density functional theory is widely used for applications of electronic structure theory in chemistry, materials science, and condensed-matter physics, but the accuracy depends on the quality of the exchange correlation functional. Here, we present a new local exchange correlation functional called MN15-L that predicts accurate results for a broad range of molecular and solid-state properties including main-group bond energies, transition metal bond energies, reaction barrier heights, noncovalent interactions, atomic excitation energies, ionization potentials, electron affinities, total atomic energies, hydrocarbon thermochemistry, and lattice constants of solids. The MN15-L functional has the same mathematical form as a previous meta-nonseparable gradient approximation exchange-correlation functional, MN12-L, but it is improved because we optimized it against a larger database, designated 2015A, and included smoothness restraints; the optimization has a much better representation of transition metals. The mean unsigned error on 422 chemical energies is 2.32 kcal/mol, which is the best among all tested functionals, with or without nonlocal exchange. The MN15-L functional also provides good results for test sets that are outside the training set. A key issue is that the functional is local (no nonlocal exchange or nonlocal correlation), which makes it relatively economical for treating large and complex systems and solids. Another key advantage is that medium-range correlation energy is built in so that one does not need to add damped dispersion by molecular mechanics in order to predict accurate noncovalent binding energies. We believe that the MN15-L functional should be useful for a wide variety of applications in chemistry, physics, materials science, and molecular biology.
机译:Kohn-Sham密度泛函理论已广泛用于电子结构理论在化学,材料科学和凝聚态物理中的应用,但其准确性取决于交换相关泛函的质量。在这里,我们提出了一种新的称为MN15-L的局部交换相关函数,该函数可以预测各种分子和固态特性的准确结果,包括主族键能,过渡金属键能,反应势垒高度,非共价相互作用,原子激发能量,电离势,电子亲和力,总原子能,碳氢化合物热化学和固体的晶格常数。 MN15-L函数具有与以前的亚不可分梯度逼近交换相关函数MN12-L相同的数学形式,但由于我们针对指定为2015A的较大数据库进行了优化,并包括平滑约束,因此对其进行了改进。优化可以更好地代表过渡金属。 422种化学能的平均无符号误差为2.32 kcal / mol,在所有测试的功能中,无论是否进行非本地交换,这都是最好的。 MN15-L功能还为训练集以外的测试集提供了良好的结果。一个关键问题是该功能是局部的(没有非局部交换或非局部相关性),这使其在处理大型和复杂的系统和实体时相对经济。另一个关键优势是内置了中程相关能量,因此无需通过分子力学增加阻尼色散即可预测准确的非共价结合能。我们相信MN15-L功能应该在化学,物理,材料科学和分子生物学中的各种应用中有用。

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