School of Chemistry, WestCHEM, University of Glasgow, Glasgow, UK.
Dalton Trans. 2018 Aug 21;47(31):10692-10701. doi: 10.1039/c8dt01262h. Epub 2018 Jun 13.
We report a robust and modular synthetic route to heterometallic rare earth-transition metal complexes. We have used the redox-active bridging ligand 1,10-phenathroline-5,6-dione (pd), which has selective N,N' or O,O' binding sites as the template for this synthetic route. The coordination complexes [Ln(hfac)(N,N'-pd)] (Ln = Y [1], Gd [2]; hfac = hexafluoroacetylacetonate) were synthesised in high yield. These complexes have been fully characterised using a range of spectroscopic techniques. Solid state molecular structures of 1 and 2 have been determined by X-ray crystallography and display different pd binding modes in coordinating and non-coordinating solvents. Complexes 1 and 2 are unusually highly coloured in coordinating solvents, for example the vis-NIR spectrum of 1 in acetonitrile displays an electronic transition centred at 587 nm with an extinction coefficient consistent with significant charge transfer. The reaction between 1 and 2 and VCp or VCp (Cp = tetramethylcyclopentadienyl) resulted in the isolation of the heterobimetallic complexes, [Ln(hfac)(N,N'-O,O'-pd)VCp] (Ln = Y [3], Gd [4]) or [Ln(hfac)(N,N'-O,O'-pd)VCp] (Ln = Y [5], Gd [6]). The solid state molecular structures of 3, 5 and 6 have been determined by X-ray crystallography. The spectroscopic data on 3-6 are consistent with oxidation of V(ii) to V(iv) and reduction of pd to pd in the heterobimetallic complexes. The spin-Hamiltonian parameters from low temperature X-band EPR spectroscopy of 3 and 5 describe a A ground state, with a V(iv) centre. DFT calculations on 3 are in good agreement with experimental data and confirm the SOMO as the d orbital localised on vanadium.
我们报告了一种稳健且模块化的合成途径,用于制备异金属稀土-过渡金属配合物。我们使用了具有选择性 N,N' 或 O,O' 配位位点的氧化还原活性桥联配体 1,10-菲咯啉-5,6-二酮 (pd) 作为该合成途径的模板。[Ln(hfac)(N,N'-pd)](Ln = Y [1],Gd [2];hfac = 乙酰丙酮)配位配合物以高产率合成。这些配合物已通过一系列光谱技术进行了充分表征。通过 X 射线晶体学确定了 1 和 2 的固态分子结构,并显示了在配位和非配位溶剂中不同的 pd 配位模式。配合物 1 和 2 在配位溶剂中呈现出异常高的颜色,例如 1 在乙腈中的可见-近红外光谱显示出以 587nm 为中心的电子跃迁,消光系数与显著的电荷转移一致。1 和 2 与 VCp 或 VCp(Cp = 四甲基环戊二烯基)之间的反应导致异双金属配合物[Ln(hfac)(N,N'-O,O'-pd)VCp](Ln = Y [3],Gd [4])或[Ln(hfac)(N,N'-O,O'-pd)VCp](Ln = Y [5],Gd [6])的分离。通过 X 射线晶体学确定了 3、5 和 6 的固态分子结构。3-6 的光谱数据与异双金属配合物中 V(ii)氧化为 V(iv)和 pd 还原为 pd 一致。3 和 5 的低温 X 波段 EPR 光谱的自旋哈密顿参数描述了一个 A 基态,其中包含一个 V(iv)中心。3 的 DFT 计算与实验数据吻合良好,并证实 SOMO 是钒上的 d 轨道局域化。