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首页> 外文期刊>Chemistry: A European journal >Syntheses, Structures and Electronic Properties of Zwitterionic Iron(II) and Cobalt(II) Complexes Featuring Ambidentate Tris(pyrazolyl)methanide Ligands
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Syntheses, Structures and Electronic Properties of Zwitterionic Iron(II) and Cobalt(II) Complexes Featuring Ambidentate Tris(pyrazolyl)methanide Ligands

机译:两性三(吡唑基)甲烷化物配体的两性离子铁(II)和钴(II)配合物的合成,结构和电子性质

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By deprotonation of the corresponding tris(pyrazolyl)methane ((Me)Tpm) precursor complexes [M((Me)Tpm)(2)][(OTf)(2)] (1 and 2), the zwitterionic tris(pyrazolyl)methanide iron(II) (3) and cobalt(II) (4) "sandwich" complexes of the general formula [M((Me)Tpmd)(2)] are easily accessible. The structurally characterised complexes 3 and 4 are the first such homoleptic 3d transition metal species to feature two "naked", outward pointing pyramidal carbanions. Density functional theory calculations show metal-centred HOMOs and LUMOs with the destabilised carbanion orbitals in the energy region of the filled transition-metal-centred frontier orbitals. The electronic structures of these complexes have been investigated in detail by various spectroscopic techniques such as NMR, EPR, SQUID, Mossbauer, etc. Both complexes adopt a high-spin (HS) configuration at room temperature in solution and in the solid state. A thermally induced high-spin to low-spin (HS-LS) transition is observed for the iron(II) complex 3. The HS-LS transition temperature of 3 in solution differs from that in the solid state, which in turn strongly depends on the amount of solvent molecules in the crystal lattice. Electrochemical studies on the corresponding cobalt(II) complex 4 provide evidence for a HS-Co-II reversible arrow LS-Co-III transition upon oxidation, which was confirmed by preliminary synthetic oxidation reactions. Overall, it can be concluded that the related kappa N-3-donor ligands tris(pyrazolyl)hydroborates (Tp(R)) and (R)Tpmd ligands have similar bonding properties and that the metal cations experience more or less the same ligand environment.
机译:通过使相应的三(吡唑基)甲烷((Me)Tpm)前体复合物[M((Me)Tpm)(2)] [(OTf)(2)](1和2)去质子化,两性离子三(吡唑基)易于获得通式[M((Me)Tpmd)(2)]的甲烷三价铁(II)(3)和钴(II)(4)“三明治”络合物。具有结构特征的配合物3和4是第一种具有两个“裸露”的,向外指向的锥体碳负离子的均质3d过渡金属物种。密度泛函理论计算表明,在以过渡金属为中心的前沿轨道的能量区域中,以金属为中心的HOMO和LUMO具有不稳定的碳负离子轨道。这些配合物的电子结构已通过各种光谱技术(例如NMR,EPR,SQUID,Mossbauer等)进行了详细研究。两种配合物在室温下在溶液和固态下均采用高自旋(HS)构型。铁(II)配合物3观察到热诱导的高自旋向低自旋(HS-LS)转变。溶液中3的HS-LS转变温度与固态不同,这在很大程度上取决于固态。晶格中溶剂分子的数量。对相应钴(II)配合物4的电化学研究为氧化后HS-Co-II可逆箭头LS-Co-III过渡提供了证据,这已通过初步的合成氧化反应得到了证实。总的来说,可以得出结论,相关的κN-3-供体配体三(吡唑基)氢硼酸酯(Tp(R))和(R)Tpmd配体具有相似的键合特性,并且金属阳离子或多或少地经历相同的配体环境。

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