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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Analysis of isotope effects in NMR one-bond indirect nuclear spin-spin coupling constants in terms of localized molecular orbitals
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Analysis of isotope effects in NMR one-bond indirect nuclear spin-spin coupling constants in terms of localized molecular orbitals

机译:根据局部分子轨道分析NMR单键间接核自旋-自旋偶合常数中的同位素效应

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摘要

We recently showed, by analyzing contributions from localized molecular orbitals, that the anomalous deuterium isotope effect in the one-bond indirect nuclear spin-spin coupling constant of methane, also called the unexpected differential sensitivity, can be explained by the transfer of s-orbital character from the stretched bond to the other unchanged bonds [ChemPhysChem, 2008, 9, 1259]. We now extend this analysis of isotope effects to the molecules BH4~-, NH4~+, SiH4, H2O and NH3 in order to test our conclusions on a wider rage of XH4 compounds and to investigate whether the lone-pair orbitals are really responsible for the absence of a similar effect in water and ammonia as proposed earlier [J. Chem. Phys., 2000, 113, 3121].
机译:我们最近通过分析局部分子轨道的贡献表明,甲烷的单键间接核自旋-自旋偶合常数中的异常氘同位素效应(也称为意外的微分敏感性)可以通过s轨道的转移来解释。从拉伸键到其他未改变键的化学特性[ChemPhysChem,2008,9,1259]。现在,我们将对同位素效应的分析扩展到分子BH4〜-,NH4〜+,SiH4,H2O和NH3,以检验我们对更广泛的XH4化合物的结论,并研究孤对轨道是否真正起了作用。在水和氨中没有像先前提出的类似的效果[J.化学Phys。,2000,113,3121]。

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