Bircher Martin P, López-Tarifa Pablo, Rothlisberger Ursula
Laboratoire de Chimie et Biochimie Computationnelles , Ecole Polytechnique Fédérale de Lausanne , 1015 Lausanne , Switzerland.
J Chem Theory Comput. 2019 Jan 8;15(1):557-571. doi: 10.1021/acs.jctc.8b00897. Epub 2018 Dec 26.
The Minnesota family of exchange-correlation (xc) functionals are among the most popular, accurate, and abundantly used functionals available to date. However, their use in plane-wave based first-principles MD has been limited by their sparse availability. Here, we present an implementation of the M05, M06, and M11 families of xc functionals within a plane wave/pseudopotential framework allowing for a comprehensive analysis of their basis set dependence. While it has been reported that in Gaussian bases some members of the Minnesota family only converge slowly to the basis set limit, (1) we show that converged energies can be conveniently obtained from plane waves if sufficiently dense integration meshes are used. Based on the HC7/11 database, we assess the influence of basis set type on the calculation of reaction enthalpies and show that complete basis set values obtained in plane waves may occasionally differ notably from their atom-centered counterparts. We provide an analysis of the origin of these differences and discuss implications on practical usage.
明尼苏达交换关联(xc)泛函族是迄今为止最流行、最准确且使用广泛的泛函之一。然而,它们在基于平面波的第一性原理分子动力学中的应用受到其可用性有限的限制。在此,我们展示了在平面波/赝势框架内对M05、M06和M11族xc泛函的实现,从而能够对它们的基组依赖性进行全面分析。虽然已有报道称在高斯基中,明尼苏达族的一些成员仅缓慢收敛到基组极限,(1)但我们表明,如果使用足够密集的积分网格,平面波可以方便地获得收敛能量。基于HC7/11数据库,我们评估了基组类型对反应焓计算的影响,并表明在平面波中获得的完全基组值偶尔可能与其以原子为中心的对应值有显著差异。我们对这些差异的起源进行了分析,并讨论了其对实际应用的影响。