首页> 外文期刊>The Journal of Chemical Physics >The effect of lone pairs and electronegativity on the indirect nuclear spin-spin coupling constants in CH2X (X=CH2, NH, O, S): Ab initio calculations using optimized contracted basis sets
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The effect of lone pairs and electronegativity on the indirect nuclear spin-spin coupling constants in CH2X (X=CH2, NH, O, S): Ab initio calculations using optimized contracted basis sets

机译:孤对和电负性对CH2X(X = CH2,NH,O,S)中间接核自旋-自旋耦合常数的影响:使用优化的收缩基集从头算

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摘要

The indirect nuclear spin-spin coupling constants of C2H4, CH2NH, CH2O, and CH2S were investigated by means of correlated ab initio calculations at the level of the second order polarization propagator approximation (SOPPA) and the second order polarization propagator approximation with coupled cluster singles and doubles amplitudes-SOPPA(CCSD) using large basis sets, which are optimized for the calculation of coupling constants. It is found that at the self-consistent-field (SCF) level CH2NH and CH2S exhibit triplet instabilities whereas CH2CH2 and CH2O show triplet quasi-instabilities, which renders the SCF results meaningless. Our best results deviate between 0.3 and 2.7 Hz from the experimental values. We find that although the one-bond C-H and Y-H couplings as well as the two- and three-bond H-H couplings are dominated by the Fermi contact term, significant contributions of the orbital paramagnetic and sometimes even spin-dipolar terms are observed for the one-bond C-Y and two-bond C-H and Y-H coupling constants. Similarly the changes in the couplings caused by the electronegativity and the lone-pair of Y are mostly due to changes in the Fermi contact (all couplings) and the orbital paramagnetic contribution (C-Y and two-bond Y-H couplings). However, the trend in the changes are neither the same for both terms not for all couplings. In particular, the position of CH2S in the series varies indicating that either the electronegativity or the lone pairs are the dominating perturbation. Furthermore, small but optimized Gaussian basis sets for the calculation of indirect nuclear spin-spin coupling constants are presented. They were obtained by contraction of the s- and p-type basis functions for C, N, O, and S and of the s-type basis functions for H of the large uncontracted basis sets. Molecular orbital coefficients of self-consistent-field calculations on CH4, NH3, H2O, H2S, and H-2 with the uncontracted basis sets were used as contraction coefficients. Applied in the calculation of all coupling constants in C2H4, CH2NH, CH2O, and CH2S the contraction leads to a maximum basis set error of similar to0.5 Hz. (C) 2001 American Institute of Physics. [References: 63]
机译:通过相关的从头算,在二阶极化传播子逼近(SOPPA)和二阶极化传播子逼近与耦合簇单值的水平上研究了C2H4,CH2NH,CH2O和CH2S的间接核自旋自旋耦合常数并使用大的基础集将振幅SOPPA(CCSD)加倍,这些基础针对耦合常数的计算进行了优化。发现在自洽场(SCF)级别,CH2NH和CH2S表现出三重态不稳定性,而CH2CH2和CH2O表现出三重态准不稳定性,这使得SCF结果毫无意义。我们的最佳结果与实验值之间的偏差为0.3到2.7 Hz。我们发现,尽管单键CH和YH耦合以及两键和三键HH耦合受费米接触项的支配,但对于一个轨道,顺磁和有时甚至自旋偶极子项的贡献很大CY和二键CH和YH耦合常数。类似地,由电负性和Y的孤对引起的耦合变化主要是由于费米接触(所有耦合)和轨道顺磁贡献(C-Y和两键Y-H耦合)的变化。但是,两个术语(并非所有耦合)的变化趋势都不相同。尤其是,CH2S在序列中的位置发生变化,表明电负性或孤对是主要的摄动。此外,提出了用于计算间接核自旋-自旋耦合常数的小但优化的高斯基集。它们是通过对大的未合约基集的C,N,O和S的s型和p型基函数以及对H的s型基函数进行收缩而获得的。将CH4,NH3,H2O,H2S和H-2的自洽场计算的分子轨道系数(具有未收缩的基集)用作收缩系数。收缩应用于计算C2H4,CH2NH,CH2O和CH2S中的所有耦合常数时,收缩会导致近似0.5 Hz的最大基数设置误差。 (C)2001美国物理研究所。 [参考:63]

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