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首页> 外文期刊>Russian Journal of Physical Chemistry >Reconstruction of STO-3G Family Basis Set for the Accurate Calculation of Magnetic Properties
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Reconstruction of STO-3G Family Basis Set for the Accurate Calculation of Magnetic Properties

机译:重建STO-3G家族基础,为准确计算磁性特性

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摘要

The new approach for the determination of orbital exponents and contracted coefficients for STO-3G family basis sets has been proposed. Calculations of the necessary coefficients have been performed using Mathcad program package with Minerr solving block. This approach has been used to perform the approximation of the Slater-type orbital (STO) by three Gaussian-type orbitals (GTO). The performance of such modified basis sets has been tested for the calculations of atomic energies using STO(0)-3G basis set and for nuclear magnetic shielding tensors using STO(1M)-3G basis set. The obtained atomic energies are characterized by lower values than those calculated using old parameters. The results for H-1 and C-13 chemical shifts calculations demonstrate better agreement with the experimental data compared to the data obtained using standard basis sets, such as 6-311G (2d, p), cc-pVDZ and pcS-1. Required time of calculations using the basic set suggested by us is less than the time spent on the calculation using standard basic sets with a similar number of basis functions. Physically adapted and at the same time small by size basic set STO(1M)-3G is perspective for the calculation of magnetic properties of big molecular systems. Proton and C-13 chemical shifts have been calculated for molecules of adenosine monophosphate (AMP) and flavinadenine dinucleotide (FAD), that play an important role in various biological processes. For both molecules the results of the calculation have shown values close to the experimental data.
机译:提出了确定轨道指数和合同系数的新方法,并为STO-3G家族基础集合。使用Mathcad程序包使用Mathcad程序包进行了必要系数的计算。这种方法已被用于通过三个高斯型轨道(GTO)进行三星式轨道(STO)的近似。已经测试了这种修改的基础组的性能,用于使用STO(0)-3G基础设定的原子能和用于使用STO(1M)-3G的核磁屏蔽张量的原子能。所获得的原子能的特征在于比使用旧参数计算的值较低的值。 H-1和C-13化学换档计算的结果与使用标准基集的数据相比,与实验数据相比,与实验数据相比,如6-311G(2D,P),CC-PVDZ和PCS-1。使用我们建议的基本集的所需计算时间小于使用具有相似数量的基本函数计算的计算时间。物理适应,同时大小尺寸基本集合STO(1M)-3G是用于计算大分子系统的磁性的透视图。已经计算了腺苷一磷酸盐(AMP)和黄兰腺苷二核苷酸(FAD)分子的质子和C-13化学变化,其在各种生物过程中起重要作用。对于两个分子,计算结果显示了靠近实验数据的值。

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