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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Fitting atomic correlation parameters for RECEP (rapid estimation of correlation energy from partial charges) method to estimate molecular correlation energies within chemical accuracy
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Fitting atomic correlation parameters for RECEP (rapid estimation of correlation energy from partial charges) method to estimate molecular correlation energies within chemical accuracy

机译:拟合原子相关参数以进行RECEP(快速估计部分电荷的相关能量)方法,以估算化学精度范围内的分子相关能量

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The accuracy of the RECEP method [Chem Phys 1997, 224, 33 and Chem Phys Lett 1999, 307, 469] has been increased considerably by the use of fitted atomic correlation parameters. This method allows an extremely rapid, practically prompt calculation of the correlation energy of molecules after an HF-SCF calculation. The G2 level correlation energy and HF-SCF charge distribution of 41 closed-shell neutral molecules (composed of H, C, N, O, and F atoms) of the G2 thermochemistry database were used to obtain the fitted RECEP atomic correlation parameters. Four different mathematical definitions of partial charges, as a multiple choice, were used to calculate the molecular correlation energies. The best results were obtained using the natural population analysis, although the other three are also recommended for use. For the 41 molecules, the G2 results were approached within a 1.8 kcal/mol standard deviation (the mean absolute difference was 1.5 kcal/mol). The RECEP atomic correlation parameters were also tested on a different, nonoverlapping set of other 24 molecules from the G2 thermochemistry database. The G2 results of these 24 molecules were approached within a 2.3 kcal/mol standard deviation (the mean absolute difference was 1.9 kcal/mol). This method is recommended to estimate total correlation energies of closed shell ground-state neutral molecules at stationary (minimums and transition states) points on the potential surface. Extension of the work for charged molecules, radicals, and molecules containing other atoms is straightforward. Numerical example as a recipe is also provided. (C) 2000 John Wiley & Sons, Inc. [References: 35]
机译:通过使用拟合的原子相关参数,RECEP方法的准确性[Chem Phys 1997,224,33和Chem Phys Lett 1999,307,469]大大提高了。该方法可以在HF-SCF计算之后非常快速,实用地计算分子的相关能。利用G2热化学数据库的41个闭壳中性分子(由H,C,N,O和F原子组成)的G2能级相关能和HF-SCF电荷分布来获得拟合的RECEP原子相关参数。作为选择,使用了四种不同的部分电荷数学定义来计算分子相关能。使用自然种群分析可获得最佳结果,尽管也建议使用其他三个。对于41个分子,G2结果接近标准偏差1.8 kcal / mol(平均绝对差为1.5 kcal / mol)。还对G2热化学数据库中其他24个分子的不同,不重叠的集合测试了RECEP原子相关参数。这24个分子的G2结果在2.3 kcal / mol标准偏差(平均绝对差为1.9 kcal / mol)内达到。建议使用此方法来估计势能表面上静止(最小和过渡态)点的封闭壳基态中性分子的总相关能。对带电分子,自由基和包含其他原子的分子的工作扩展很简单。还提供了数值示例作为配方。 (C)2000 John Wiley&Sons,Inc. [参考:35]

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