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General optimization procedure towards the design of a new family of minimal parameter spin-component-scaled double-hybrid density functional theory

机译:一般优化程序朝着设计新的最小参数自旋组件缩放双混合密度函数理论的设计

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摘要

A general optimization procedure towards the development and implementation of a new family of minimal parameter spin-component-scaled double-hybrid (mSD) density functional theory (DFT) is presented. The nature of the proposed exchange-correlation functional establishes a methodology with minimal empiricism. This new family of double-hybrid (DH) density functionals is demonstrated using the PBEPBE functional, illustrating the optimization procedure to the mSD-PBEPBE method, and the performance characteristics shown for a set of non-covalent complexes covering a broad regime of weak interactions. With only two parameters, mSD-PBEPBE and its cost-effective counterpart, RI-mSD-PBEPBE, show a mean absolute error of ca. 0.4 kcal mol(-1) averaged over 66 weak interacting systems. Following a successive 2D-grid refinement for a CBS extrapolation of the coefficients, the optimization procedure can be recommended for the design and implementation of a variety of additional DH methods using any of the plethora of currently available functionals.
机译:朝向最小的参数自旋分量缩放双杂交(MSD)密度泛函理论(DFT)的一个新家族的开发和实施的一般的优化过程被呈现。所提出的交换相关函数的性质建立与最小的经验主义的方法。这种新的双杂交(DH)密度泛函的家庭使用PBEPBE功能,示出了优化过程将MSD-PBEPBE方法证实的,并示出用于覆盖弱相互作用的广泛的体系一组非共价复合物的性能特征。由于只有两个参数,MSD-PBEPBE和成本效益的对应,RI-MSD-PBEPBE,显示大约的平均绝对误差0.4千卡摩尔(-1)平均超过66弱相互作用的系统。以下为系数的CBS外推连续2D网格加密,可推荐用于各种使用任何现有函的过多的额外DH方法的设计和实施的优化过程。

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