首页> 外文OA文献 >A Series of Diamagnetic Pyridine Monoimine Rhenium Complexes with Different Degrees of Metal-to-Ligand Charge Transfer: Correlating ^(13)C NMR Chemical Shifts with Bond Lengths in Redox-Active Ligands
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A Series of Diamagnetic Pyridine Monoimine Rhenium Complexes with Different Degrees of Metal-to-Ligand Charge Transfer: Correlating ^(13)C NMR Chemical Shifts with Bond Lengths in Redox-Active Ligands

机译:具有不同程度的金属到配体电荷转移的一系列反磁性吡啶单亚胺Complex配合物:氧化还原活性配体中与键长相关的^(13)C NMR化学位移

摘要

A set of pyridine monoimine (PMI) rhenium(I) tricarbonyl chlorido complexes with substituents of different steric and electronic properties was synthesized and fully characterized. Spectroscopic (NMR and IR) and single-crystal X-ray diffraction analyses of these complexes showed that the redox-active PMI ligands are neutral and that the overall electronic structure is little affected by the choices of the substituent at the ligand backbone. One- and two-electron reduction products were prepared from selected starting compounds and could also be characterized by multiple spectroscopic methods and X-ray diffraction. The final product of a one-electron reduction in THF is a diamagnetic metal–metal-bonded dimer after loss of the chlorido ligand. Bond lengths in and NMR chemical shifts of the PMI ligand backbone indicate partial electron transfer to the ligand. Two-electron reduction in THF also leads to the loss of the chlorido ligand and a pentacoordinate complex is obtained. The comparison with reported bond lengths and ^(13)C NMR chemical shifts of doubly reduced free pyridine monoaldimine ligands indicates that both redox equivalents in the doubly reduced rhenium complex investigated here are located in the PMI ligand. With diamagnetic complexes varying over three formal reduction stages at the PMI ligand we were, for the first time, able to establish correlations of the ^(13)C NMR chemical shifts with the relevant bond lengths in redox-active ligands over a full redox series.
机译:合成并完全表征了一组具有不同空间和电子性质的取代基的吡啶单亚胺(PMI)((I)三羰基氯代配合物。这些配合物的光谱(NMR和IR)和单晶X射线衍射分析表明,氧化还原活性PMI配体是中性的,整个电子结构几乎不受配体主链上取代基的选择的影响。一电子还原产物和二电子还原产物是由选定的起始化合物制备的,也可以通过多种光谱法和X射线衍射进行表征。失去氯配体后,四氢呋喃的单电子还原的最终产物是抗磁性的金属-金属键合的二聚体。 PMI配体主链的键长和NMR化学位移表明部分电子转移至配体。 THF中的两电子还原还导致氯代配体的损失,并获得了五配位络合物。与报告的键长和双还原的吡啶单醛亚胺配体的^(13)C NMR化学位移比较表明,此处研究的双还原的reduced络合物中的两个氧化还原当量均位于PMI配体中。通过在PMI配体的三个正式还原阶段改变抗磁性复合物,我们首次能够建立^(13)C NMR化学位移与完整氧化还原系列中氧化还原活性配体中相关键长的相关性。 。

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