非共价相互作用
密度泛函理论
紧密结合
哈密顿量(控制论)
原子轨道
波函数
化学
统计物理学
计算化学
分子物理学
化学物理
物理
量子力学
电子结构
氢键
分子
数学
电子
数学优化
作者
Stefan Grimme,Christoph Bannwarth,Philip Shushkov
标识
DOI:10.1021/acs.jctc.7b00118
摘要
We propose a novel, special purpose semiempirical tight binding (TB) method for the calculation of structures, vibrational frequencies, and noncovalent interactions of large molecular systems with 1000 or more atoms. The functional form of the method is related to the self-consistent density functional TB scheme and mostly avoids element-pair-specific parameters. The parametrization covers all spd-block elements and the lanthanides up to Z = 86 using reference data at the hybrid density functional theory level. Key features of the Hamiltonian are the use of partially polarized Gaussian-type orbitals, a double-ζ orbital basis for hydrogen, atomic-shell charges, diagonal third-order charge fluctuations, coordination number-dependent energy levels, a noncovalent halogen-bond potential, and the well-established D3 dispersion correction. The accuracy of the method, called Geometry, Frequency, Noncovalent, eXtended TB (GFN-xTB), is extensively benchmarked for various systems in comparison with existing semiempirical approaches, and the method is applied to a few representative structural problems in chemistry.
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