Sensato F R, Cass Q B, Longo E, Zukerman-Schpector J, Custodio R, Andrés J, Hernandes M Z, Longo R L
Departamento de Química, Universidade Federal de São Carlos, CP 676, 13565-905, São Carlos, SP, Brazil.
Inorg Chem. 2001 Nov 5;40(23):6022-5. doi: 10.1021/ic010020h.
We have carried out a combined experimental and theoretical study of the molecular structure of the MoO(O(2))(2)(OPy)(H(2)O) coordination compound using X-ray crystallography and DFT-B3LYP computational method, respectively. The MoO(O(2))(2)(OPy)(H(2)O) complex crystallizes in the orthorhombic space group Pmna with Z = 4, a = 6.9001(9) A, b = 8.0471(1) A, c = 16.227(2) A, V = 901.0(2) A(3), and the X-ray data analysis yields a bipyramidal-pentagonal coordination polyhedron for the Mo atom. The pyridine N-oxide (OPy) ligand occupies the equatorial position, with the oxygen atom of this ligand being located in the same plane as the four peroxo oxygen atoms. The H(2)O ligand is situated trans to the oxo group, forming intermolecular hydrogen bonds with peroxo groups belonging to two adjacent complexes. In our theoretical approach these intermolecular interactions were taken into account by including two methanol molecules which form hydrogen bonds with the water ligand leading to a good agreement between the calculated and the experimental geometry. Our results suggest that it is necessary to take into account the presence of these interactions in order to reconcile the theoretical results to the experimental data, in particular the distance between Mo and the oxygen of water ligand. These results seem to be a general feature for analogous bis-peroxo complexes that have been reported in the literature.
我们分别使用X射线晶体学和DFT - B3LYP计算方法,对MoO(O₂)₂(OPy)(H₂O)配位化合物的分子结构进行了实验与理论相结合的研究。MoO(O₂)₂(OPy)(H₂O)配合物结晶于正交空间群Pmna中,Z = 4,a = 6.9001(9) Å,b = 8.0471(1) Å,c = 16.227(2) Å,V = 901.0(2) ų,X射线数据分析得出Mo原子的双锥 - 五角配位多面体。吡啶N - 氧化物(OPy)配体占据赤道位置,该配体的氧原子与四个过氧氧原子位于同一平面。H₂O配体与氧代基团呈反式排列,与属于两个相邻配合物的过氧基团形成分子间氢键。在我们的理论方法中,通过包含两个与水配体形成氢键的甲醇分子来考虑这些分子间相互作用,从而使计算几何结构与实验几何结构达成良好一致。我们的结果表明,为了使理论结果与实验数据相吻合,特别是Mo与水配体的氧之间的距离,有必要考虑这些相互作用的存在。这些结果似乎是文献中报道的类似双过氧配合物的一个普遍特征。