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通过H⋅⋅⋅I氢键诱导自旋轨道重原子对轻原子H NMR化学位移影响的实验与理论证据

Experimental and Theoretical Evidence of Spin-Orbit Heavy Atom on the Light Atom H NMR Chemical Shifts Induced through H⋅⋅⋅I Hydrogen Bond.

作者信息

Vícha Jan, Švec Petr, Růžičková Zdeňka, Samsonov Maksim A, Bártová Kateřina, Růžička Aleš, Straka Michal, Dračínský Martin

机构信息

Institute of Organic Chemistry and Biochemistry, AS CR, Flemingovo nám. 2, Prague, 16610, Czech Republic.

Centre of Polymer Systems, Tomas Bata University in Zlín, Tomáše Bati 5678, Zlín, 760 01, Czech Republic.

出版信息

Chemistry. 2020 Jul 17;26(40):8698-8702. doi: 10.1002/chem.202001532. Epub 2020 Jun 12.

Abstract

Spin-orbit (SO) heavy-atom on the light-atom (SO-HALA) effect is the largest relativistic effect caused by a heavy atom on its light-atom neighbors, leading, for example, to unexpected NMR chemical shifts of H, C, and N nuclei. In this study, a combined experimental and theoretical evidence for the SO-HALA effect transmitted through hydrogen bond is presented. Solid-state NMR data for a series of 4-dimethylaminopyridine salts containing I , Br and Cl counter ions were obtained experimentally and by theoretical calculations. A comparison of the experimental chemical shifts with those calculated by a standard DFT methodology without the SO contribution to the chemical shifts revealed a remarkable error of the calculated proton chemical shift of a hydrogen atom that is in close contact with the iodide anion. The addition of the relativistic SO correction in the calculations significantly improves overall agreement with the experiment and confirms the propagation of the SO-HALA effect through hydrogen bonds.

摘要

轻原子上的自旋轨道(SO)重原子效应(SO-HALA效应)是重原子对其轻原子邻域产生的最大相对论效应,例如,会导致H、C和N原子核出现意想不到的核磁共振化学位移。在本研究中,给出了通过氢键传递的SO-HALA效应的实验和理论相结合的证据。通过实验和理论计算获得了一系列含有I⁻、Br⁻和Cl⁻抗衡离子的4-二甲氨基吡啶盐的固态核磁共振数据。将实验化学位移与通过不考虑SO对化学位移贡献的标准密度泛函理论(DFT)方法计算得到的化学位移进行比较,结果显示与碘阴离子紧密接触的氢原子的计算质子化学位移存在显著误差。在计算中加入相对论性SO校正后,显著提高了与实验的整体一致性,并证实了SO-HALA效应通过氢键的传递。

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