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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A Quantum Chemistry View on Two Archetypical Paramagnetic Pentacoordinate Nickel(II) Complexes Offers a Fresh Look on Their NMR Spectra
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A Quantum Chemistry View on Two Archetypical Paramagnetic Pentacoordinate Nickel(II) Complexes Offers a Fresh Look on Their NMR Spectra

机译:两种原型化学查看的Quantum Chemistics Pormatise镍(II)复合物在其NMR光谱上提供清新的外观

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摘要

Quantum chemical methods for calculating paramagnetic NMR observables are becoming increasingly accessible and are being included in the inorganic chemistry practice. Here, we test the performance of these methods in the prediction of proton hyperfine shifts of two archetypical high-spin pentacoordinate nickel(II) complexes (NiSAL-MeDPT and NiSAL-HDPT), which, for a variety of reasons, turned out to be perfectly suited to challenge the predictions to the finest level of detail. For NiSAL-MeDPT, new NMR experiments yield an assignment that perfectly matches the calculations. The slightly different hyperfine shifts from the two "halves" of the molecules related by a pseudo-C-2 axis, which are experimentally divided into two well-defined spin systems, are also straightforwardly distinguished by the calculations. In the case of NiSAL-HDPT, for which no X-ray structure is available, the quality of the calculations allowed us to refine its structure using as a starting template the structure of NiSAL-MeDPT.
机译:计算顺磁NMR观测值的量子化学方法越来越容易获得,并被纳入无机化学实践中。在这里,我们测试了这些方法在预测两个典型的高自旋五配位镍(II)络合物(NiSAL MeDPT和NiSAL HDPT)的质子超精细位移中的性能,由于各种原因,结果证明,它们非常适合在最精细的程度上挑战预测。对于NiSAL MeDPT,新的核磁共振实验产生的赋值与计算结果完全匹配。由伪C-2轴关联的分子的两个“半体”的超精细位移略有不同,这两个“半体”在实验上被分为两个定义良好的自旋系统,计算结果也直接区分了这两个超精细位移。在NiSAL HDPT的情况下,没有可用的X射线结构,计算的质量使我们能够使用NiSAL MeDPT的结构作为起始模板来细化其结构。

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