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四分量相对论计算过渡金属配合物的核磁共振屏蔽常数-第 2 部分:钴的氮配位配合物。

Four-Component Relativistic Calculations of NMR Shielding Constants of the Transition Metal Complexes-Part 2: Nitrogen-Coordinated Complexes of Cobalt.

机构信息

A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences, Favorsky St. 1, Irkutsk 664033, Russia.

出版信息

Int J Mol Sci. 2022 Oct 29;23(21):13178. doi: 10.3390/ijms232113178.

Abstract

Both four-component relativistic and nonrelativistic computations within the GIAO-DFT(PBE0) formalism have been carried out for N and Co NMR shielding constants and chemical shifts of a number of the nitrogen-coordinated complexes of cobalt. It was found that the total values of the calculated nitrogen chemical shifts of considered cobalt complexes span over a range of more than 580 ppm, varying from -452 to +136 ppm. At that, the relativistic corrections to nitrogen shielding constants and chemical shifts were demonstrated to be substantial, changing accordingly from ca. -19 to +74 ppm and from -68 to +25 ppm. Solvent effects on N shielding constants and chemical shifts were shown to have contributions no less important than the relativistic effects, namely from -35 to +63 ppm and from -74 to +23 ppm, respectively. Cobalt shielding constants and chemical shifts were found to vary in the ranges of, accordingly, -20,157 to -11,373 ppm and from +3781 to +13,811. The relativistic effects are of major importance in the cobalt shielding constants, resulting in about 4% for the shielding-type contributions, while solvent corrections to cobalt shielding constants appeared to be of less significance, providing corrections of about 1.4% to the gas phase values.

摘要

已针对氮和钴 NMR 屏蔽常数和一系列钴配位配合物的化学位移进行了四分量相对论和非相对论 GIAO-DFT(PBE0) 计算。结果发现,所考虑的钴配合物的氮化学位移的总计算值跨越了超过 580 ppm 的范围,从-452 到+136 ppm 不等。在这种情况下,氮屏蔽常数和化学位移的相对论修正被证明是相当大的,相应地从大约-19 到+74 ppm 和从-68 到+25 ppm 变化。溶剂对 N 屏蔽常数和化学位移的影响被证明与相对论效应一样重要,分别为-35 至+63 ppm 和-74 至+23 ppm。钴屏蔽常数和化学位移的变化范围分别为-20,157 至-11,373 ppm 和+3781 至+13,811。相对论效应对钴屏蔽常数有重大影响,导致屏蔽型贡献约为 4%,而对钴屏蔽常数的溶剂校正似乎不太重要,对气相值的校正约为 1.4%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50e7/9658221/6863ff58290d/ijms-23-13178-g001a.jpg

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