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首页> 外文期刊>Angewandte Chemie >A Square-Planar Tetracoordinate Oxygen-Containing Ti4O_(17) Cluster Stabilized by Two 1,1 -Ferrocenedicarboxylato Ligands
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A Square-Planar Tetracoordinate Oxygen-Containing Ti4O_(17) Cluster Stabilized by Two 1,1 -Ferrocenedicarboxylato Ligands

机译:由两个1,1-二茂铁二羧基配体稳定的方形平面四价含氧Ti4O_(17)团簇

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摘要

By introducing steric constraints into molecular compounds, it is possible to achieve atypical coordination geometries for the elements. Herein, we demonstrate that a titanium-oxo cluster [{Ti4(μ4-O)(μ2-O)2}(OPri)6(fdc)2], which possesses a unique edge-sharing Ti4O_(17) octahedron tetramer core, is stabilized by the constraints produced by two orthogonal 1,1'-ferrocenedicarboxylato (fdc) ligands. As a result, a square-planar tetracoordinate oxygen (ptO) can be generated. The bonding pattern of this unusual anti-van't Hoff/ he Bel oxygen, which has been probed by theoretical calculations, can be described by two horizontally o-bonded 2p_x and 2p_y orbitals along with one perpendicular nonbonded 2p_x orbital. While the two ferrocene units are separated spatially by the ptO with an Fe—Fe separation of 10.4 A, electronic communication between them still takes place as revealed by the cluster's two distinct one-electron electrochemical oxidation processes.
机译:通过将空间约束引入分子化合物,可以实现元素的非典型配位几何形状。在此,我们证明了钛-氧簇[{Ti4(μ4-O)(μ2-O)2}(OPri)6(fdc)2],它具有独特的边缘共享的Ti4O_(17)八面体四聚体核,通过两个正交的1,1'-二茂铁基二羧基(fdc)配体产生的约束条件稳定了α。结果,可以产生正方形平面的四配位氧(ptO)。通过理论计算已探究的这种异常的反范特霍夫/贝尔氧气的键合模式可以通过两个水平的O键合2p_x和2p_y轨道以及一个垂直的非键合2p_x轨道来描述。尽管两个二茂铁单元在空间上被ptO隔开,Fe-Fe间隔为10.4 A,但它们之间仍然发生电子通讯,这是由簇的两个不同的单电子电化学氧化过程所揭示的。

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