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Polarized Molecular Orbital Model Chemistry. 1. Ab Initio Foundations

机译:极化分子轨道模型化学。 1.从头算基金会

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The objective of this paper is to examine the minimal requirements for obtaining semiquantitative polarizabilities of molecules, in order to provide a well-founded starting point for a new semiempirical molecular orbital formulation that is more suitable than presently available methods for simulating electronic polarization effects. For this purpose, we present polarizability calculations for 38 molecules with 36 basis sets, including many unconventional ones, and five semiempirical molecular orbital theories based on neglect of diatomic differential overlap. We conclude that two basis sets are particularly promising to serve as bases for semiempirical improvement, namely, STO-3G(,P), in which diffuse p functions are added to all hydrogens, and 3-(21,3,21 )G, in which a minimal basis set is augmented with one extra s function on every atom. We especially recommend the former because all intra-atomic overlap integrals are zero by symmetry, which makes it a better candidate for neglect-of-differential-overlap treatments.
机译:本文的目的是研究获得分子的半定量极化率的最低要求,以便为新的半经验分子轨道配方提供一个有充分根据的起点,该配方比目前可用的模拟电子极化效应的方法更合适。为此,我们介绍了38个分子的极化率计算,其中包括36个基础集,其中包括许多非常规分子,以及基于对双原子微分重叠的忽略的五种半经验分子轨道理论。我们得出的结论是,两个基础集特别有希望用作半经验改进的基础,即STO-3G(,P),其中向所有氢中添加了扩散p函数,以及3-(21,3,21)G,其中最小基集在每个原子上都增加了一个额外的s函数。我们特别推荐前者,因为所有原子内重叠积分通过对称性均为零,这使其成为忽略微分重叠处理的更好候选者。

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