Zhou Ming-Dong, Zhao Jin, Li Jun, Yue Shuang, Bao Chang-Nian, Mink Janos, Zang Shu-Liang, Kühn Fritz E
Department of Chemistry, Liaoning University, Chongshan, Middle Road, No. 66, 110036 Shenyang, P.R. China.
Chemistry. 2007;13(1):158-66. doi: 10.1002/chem.200600863.
Several Schiff-base ligands readily form complexes with methyltrioxorhenium(VII) (MTO) by undergoing a hydrogen transfer from a ligand-bound OH group to a ligand N atom. The resulting complexes are stable at room temperature and can be handled and stored in air without problems. Due to the steric demands of the ligands they display distorted trigonal-bipyramidal structures in the solid state, as shown by X-ray crystallography, with the O(-) moiety binding to the Lewis acidic Re atom and the Re-bound methyl group being located either in cis or trans position to the Schiff base. In solution, however, the steric differences seem not to be maintained, as can be deduced from (17)O NMR spectroscopy. Furthermore, the Schiff-base ligands exchange with donor ligands. Nevertheless, the catalytic behaviour is influenced significantly by the Schiff bases coordinated to the MTO moiety, which lead either to high selectivities and good activities or to catalyst decomposition. A large excess of ligand, in contrast to the observations with aromatic N-donor ligands, is detrimental to the catalytic performance as it leads to catalyst decomposition.
几种席夫碱配体通过将配体结合的羟基上的氢转移到配体的氮原子上,很容易与甲基三氧化铼(VII)(MTO)形成配合物。所得配合物在室温下稳定,可以在空气中处理和储存而无问题。由于配体的空间需求,如X射线晶体学所示,它们在固态中呈现扭曲的三角双锥结构,其中O(-)部分与路易斯酸性铼原子结合,与席夫碱处于顺式或反式位置的铼结合甲基。然而,从(17)O核磁共振光谱可以推断,在溶液中,空间差异似乎无法维持。此外,席夫碱配体与供体配体发生交换。尽管如此,与MTO部分配位的席夫碱对催化行为有显著影响,这要么导致高选择性和良好的活性,要么导致催化剂分解。与芳香族氮供体配体的观察结果相反,大量过量的配体对催化性能有害,因为它会导致催化剂分解。