Storer J W, Giesen D J, Cramer C J, Truhlar D G
Department of Chemistry, University of Minnesota, Minneapolis 55455-0431, USA.
J Comput Aided Mol Des. 1995 Feb;9(1):87-110. doi: 10.1007/BF00117280.
We propose a new criterion for defining partial charges on atoms in molecules, namely that physical observables calculated from those partial charges should be as accurate as possible. We also propose a method to obtain such charges based on a mapping from approximate electronic wave functions. The method is illustrated by parameterizing two new charge models called AM1-CM1A and PM3-CM1P, based on experimental dipole moments and, respectively, on AM1 and PM3 semiempirical electronic wave functions. These charge models yield rms errors of 0.30 and 0.26 D, respectively, in the dipole moments of a set of 195 neutral molecules consisting of 103 molecules containing H, C, N and O, covering variations of multiple common organic functional groups, 68 fluorides, chlorides, bromides and iodides, 15 compounds containing H, C, Si or S, and 9 compounds containing C-S-O or C-N-O linkages. In addition, partial charges computed with this method agree extremely well with high-level ab initio calculations for both neutral compounds and ions. The CM1 charge models provide a more accurate point charge representation of the dipole moment than provided by most previously available partial charges, and they are far less expensive to compute.
我们提出了一种定义分子中原子上部分电荷的新准则,即根据这些部分电荷计算出的物理可观测量应尽可能准确。我们还提出了一种基于近似电子波函数映射来获得此类电荷的方法。通过参数化两个名为AM1-CM1A和PM3-CM1P的新电荷模型来说明该方法,这两个模型分别基于实验偶极矩以及AM1和PM3半经验电子波函数。对于一组由195个中性分子组成的数据集,这些电荷模型在偶极矩方面的均方根误差分别为0.30 D和0.26 D,这组分子包括103个含有H、C、N和O的分子,涵盖了多种常见有机官能团的变化情况,68个氟化物、氯化物、溴化物和碘化物,15个含有H、C、Si或S的化合物,以及9个含有C-S-O或C-N-O键的化合物。此外,用这种方法计算出的部分电荷与中性化合物和离子的高水平从头算计算结果非常吻合。与大多数先前可用的部分电荷相比,CM1电荷模型能提供更精确的偶极矩点电荷表示,并且计算成本要低得多。