高斯分布
微扰理论(量子力学)
电离能
电子相关
原子物理学
从头算
基准集
二次方程
电离
化学
电子
分子
高斯轨道
计算
物理
计算化学
量子力学
数学
离子
几何学
算法
作者
John A. Pople,Martin Head‐Gordon,Douglas J. Fox,Krishnan Raghavachari,Larry A. Curtiss
摘要
A general procedure is developed for the computation of the total energies of molecules at their equilibrium geometries. Ab initio molecular orbital theory is used to calculate electronic energies by a composite method, utilizing large basis sets (including diffuse-sp, double-d and f-polarization functions) and treating electron correlation by Mo/ller–Plesset perturbation theory and by quadratic configuration interaction. The theory is also used to compute zero-point vibrational energy corrections. Total atomization energies for a set of 31 molecules are found to agree with experimental thermochemical data to an accuracy greater than 2 kcal mol−1 in most cases. Similar agreement is achieved for ionization energies, electron and proton affinities. Residual errors are assessed for the total energies of neutral atoms.
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