首页> 外文OA文献 >Influence of ring-expanded N-Heterocyclic Carbenes on the structures of half-sandwich Ni(I) complexes: An X-ray, electron paramagnetic resonance (EPR), and electron nuclear double resonance (ENDOR) study
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Influence of ring-expanded N-Heterocyclic Carbenes on the structures of half-sandwich Ni(I) complexes: An X-ray, electron paramagnetic resonance (EPR), and electron nuclear double resonance (ENDOR) study

机译:环膨胀的N-杂环卡宾对半三明治Ni(I)配合物结构的影响:X射线,电子顺磁共振(EPR)和电子核双共振(ENDOR)研究

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摘要

Potassium graphite reduction of the half-sandwich Ni(II) ring-expanded diamino/diamidocarbene complexes CpNi(RE-NHC)Br gave the Ni(I) derivatives CpNi(RE-NHC) (where RE-NHC = 6-Mes (1), 7-Mes (2), 6-MesDAC (3)) in yields of 40%–50%. The electronic structures of paramagnetic 1–3 were investigated by CW X-/Q-band electron paramagnetic resonance (EPR) and Q-band 1H electron nuclear double resonance (ENDOR) spectroscopy. While small variations in the g-values were observed between the diaminocarbene complexes 1 and 2, pronounced changes in the g-values were detected between the almost isostructural species (1) and diamidocarbene species (3). These results highlight the sensitivity of the EPR g-tensor to changes in the electronic structure of the Ni(I) centers generated by incorporation of heteroatom substituents onto the backbone ring positions. Variable-temperature EPR analysis also revealed the presence of a second Ni(I) site in 3. The experimental g-values for these two Ni(I) sites detected by EPR in frozen solutions of 3 are consistent with resolution on the EPR time scale of the disordered components evident in the X-ray crystallographically determined structure and the corresponding density functional theory (DFT)-calculated g-tensor. Q-band 1H ENDOR measurements revealed a small amount of unpaired electron spin density on the Cp rings, consistent with the calculated SOMO of complexes 1–3. The magnitude of the 1H A values for 3 were also notably larger, compared to 1 and 2, again highlighting the influence of the diamidocarbene on the electronic properties of 3.
机译:半夹心式Ni(II)环扩环的二氨基/二叠碳碳烯配合物CpNi(RE-NHC)Br的钾石墨还原得到Ni(I)衍生物CpNi(RE-NHC)(其中RE-NHC = 6-Mes(1 ),7-Mes(2),6-MesDAC(3)),产率为40%–50%。通过CW X / Q带电子顺磁共振(EPR)和Q带1H电子核双共振(ENDOR)光谱研究了顺磁性1-3的电子结构。虽然在二氨基卡宾配合物1和2之间观察到g值的微小变化,但在几乎同构的物种(1)和二酰胺基碳烯物种(3)之间检测到g值的明显变化。这些结果强调了EPR g-张量对Ni(I)中心电子结构变化的敏感性,该Ni(I)中心是通过将杂原子取代基并入主链环位置而产生的。可变温度EPR分析还揭示了在3中存在第二个Ni(I)位点。EPR在3的冷冻溶液中通过EPR检测到的这两个Ni(I)位点的实验g值与EPR时间尺度上的分辨率一致在X射线晶体学确定的结构和相应的密度泛函理论(DFT)计算的g张量中显而易见的无序成分的分布。 Q波段1H ENDOR测量显示Cp环上有少量不成对的电子自旋密度,与复合物1-3的SOMO计算值一致。与1和2相比,3的1H A值的幅度也明显更大,再次突出了二酰胺基卡宾对3的电子性质的影响。

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