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优化的赝势和基组用于电催化应用的半经验密度泛函理论。

Optimized Pseudopotentials and Basis Sets for Semiempirical Density Functional Theory for Electrocatalysis Applications.

出版信息

J Phys Chem Lett. 2021 Oct 28;12(42):10304-10309. doi: 10.1021/acs.jpclett.1c02918. Epub 2021 Oct 15.

Abstract

A complete set of Goedecker, Teter, and Hutter (GTH) norm-conserving pseudopotentials (PPs) have been optimized, in conjunction with molecular optimized (MOLOPT) basis sets, for both the B97M-rV and ωB97X-V density functionals for members of the main-group elements and 3d and noble metals. The resulting small-core PPs and corresponding DZVP, TZVP, and TZV2P basis sets yield notable improvements compared to the original PBE defaults when validated against all electron calculations for redox reaction energies and geometries, binding energies, and vibrational Stark effects for metal monocarbonyls in vacuum. Further validation of the optimized PP/MOLOPT basis set combinations was performed using ab initio molecular dynamics simulations and shows greatly improved agreement with experimental trends for metal surface relaxations and the adsorption behavior of CO on solid metal surfaces.

摘要

一套完整的 Goedecker、Teter 和 Hutter(GTH)规范守恒赝势(PP)已经与分子优化(MOLOPT)基组一起优化,适用于主要元素成员的 B97M-rV 和 ωB97X-V 密度泛函以及 3d 和贵金属。与原始 PBE 默认值相比,当针对氧化还原反应能量和几何形状、结合能以及金属单羰基在真空中的振动斯塔克效应的所有电子计算进行验证时,所得的小核 PP 和相应的 DZVP、TZVP 和 TZV2P 基组产生了显著的改进。使用从头算分子动力学模拟进一步验证了优化的 PP/MOLOPT 基组组合,并显示出与金属表面弛豫和 CO 在固体金属表面上的吸附行为的实验趋势有很大的改善。

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