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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 >Combining NMR of dynamic and paramagnetic molecules: Fluxional high-spin nickel(II) complexes bearing bisguanidine ligands
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Combining NMR of dynamic and paramagnetic molecules: Fluxional high-spin nickel(II) complexes bearing bisguanidine ligands

机译:结合动态和顺磁性分子的NMR:带有双胍配体的助熔高自旋镍(II)配合物

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摘要

A detailed nuclear magnetic resonance (NMR) study was carried out on a series of paramagnetic, tetrahedrally coordinated nickel(II) dihalide complexes featuring chelating guanidine ligands. A complete assignment of the NMR signals for all complexes was achieved by sophisticated NMR experiments, including correlation spectra. The effects of halide exchange, as well as the variation in the guanidine-metal bite angles on the paramagnetic shifts, were assessed. The paramagnetic shift was derived with the aid of the diamagnetic NMR spectra of the analogous Zn complexes, which were synthesized for this purpose. The experimentally derived paramagnetic shift was then compared with the values obtained from quantum chemical (DFT) calculations. Furthermore, variable-temperature NMR studies were recorded for all complexes. It is demonstrated that NMR spectroscopy can be applied to evaluate the rate constants of fast fluxional processes within paramagnetic and catalytically active metal complexes.
机译:对一系列具有螯合胍配体特征的顺磁性,四面体配位的二卤化镍(II)二卤化物配合物进行了详细的核磁共振(NMR)研究。通过复杂的NMR实验(包括相关光谱)可以对所有配合物的NMR信号进行完全分配。评估了卤化物交换的影响,以及胍-金属咬合角度对顺磁位移的影响。顺磁性位移借助于类似的Zn配合物的抗磁性NMR光谱得出,其为此目的而合成。然后将实验得出的顺磁位移与从量子化学(DFT)计算获得的值进行比较。此外,记录了所有复合物的变温NMR研究。结果表明,NMR光谱学可用于评估顺磁性和催化活性金属络合物中快速流动过程的速率常数。

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