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Oxidative Addition of Carbon–Carbon Bonds with a Redox-Active Bis(imino)pyridine Iron Complex

机译:碳 - 碳键的氧化加成有氧化还原活性双(亚氨基)吡啶铁络合物

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摘要

Addition of biphenylene to the bis(imino)pyridine iron dinitrogen complexes, (iPrPDI)Fe(N2)2 and [(MePDI)Fe(N2)]2(μ2-N2) (RPDI = 2,6-(2,6-R2—C6H3— N=CMe)2C5H3N; R = Me, iPr), resulted in oxidative addition of a C—C bond at ambient temperature to yield the corresponding iron biphenyl compounds, (RPDI)Fe-(biphenyl). The molecular structures of the resulting bis-(imino)pyridine iron metallacycles were established by X-ray diffraction and revealed idealized square pyramidal geometries. The electronic structures of the compounds were studied by Mössbauer spectroscopy, NMR spectroscopy, magnetochemistry, and X-ray absorption and X-ray emission spectroscopies. The experimental data, in combination with broken-symmetry density functional theory calculations, established spin crossover (low to intermediate spin) ferric compounds antiferromagnetically coupled to bis(imino)pyridine radical anions. Thus, the overall oxidation reaction involves cooperative electron loss from both the iron center and the redox-active bis(imino)pyridine ligand.
机译:将联苯添加到双(亚氨基)吡啶铁二氮配合物( iPr PDI)Fe(N2)2和[( Me PDI)Fe(N2)] 2( μ2-N2)( R PDI = 2,6-(2,6-R2-C6H3-N = CMe)2C5H3N; R = Me, i Pr),得到在环境温度下通过氧化键合CC键得到相应的联苯铁化合物( R PDI)Fe-(联苯)。通过X射线衍射建立了所得双-(亚氨基)吡啶铁金属环的分子结构,并揭示了理想的方形锥体形状。化合物的电子结构通过Mössbauer光谱,NMR光谱,磁化学以及X射线吸收和X射线发射光谱学进行了研究。实验数据,结合破对称密度泛函理论计算,建立了反铁磁耦合至双(亚氨基)吡啶基阴离子的自旋交叉(低自旋旋至中自旋)三价铁化合物。因此,整个氧化反应涉及铁中心和氧化还原活性双(亚氨基)吡啶配体的电子协同损失。

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