Vrcek Ivana Vinković, Birus Mladen, Bühl Michael
Faculty of Pharmacy and Biochemistry, University of Zagreb, HR-10000 Zagreb, Croatia.
Inorg Chem. 2007 Feb 19;46(4):1488-501. doi: 10.1021/ic061699y. Epub 2007 Jan 24.
Extensive geometry optimizations have been performed at the BP86 level of density functional theory, in order to identify the most stable isomer of pentacoordinated [VO(OH)UH2O]+ and [VOU(H2O)2]2+ as well as of hexacoordinated [VO(OH)U(H2O)2]+ and [VOU(H2O)3]2+ complexes (U = hydroxyurea anion). Most of these are conformationally very flexible, with up to 12 isomers within an energy range of 5 kcal/mol. The most stable hexacoordinate forms are characterized by the oxo ligand in trans position to the carbonyl O atom of U. Bulk solvent effects on the relative stabilities, estimated from a polarizable continuum model, are indicated to be small and do not affect the energetic sequence of the isomers significantly. Details of the coordination sphere of the most stable isomers in aqueous solution (coordination number, protonation state) have been studied with Car-Parrinello molecular dynamics simulations. The preferred mechanisms of interconversion between selected [VO(OH)U(H2O)2]+ isomers, according to the DFT computations, involve proton transfers between H2O and OH or between O and OH ligands in the coordination sphere of the metal, assisted by a water molecule from the second hydration sphere.
为了确定五配位的[VO(OH)UH₂O]⁺和[VOU(H₂O)₂]²⁺以及六配位的[VO(OH)U(H₂O)₂]⁺和[VOU(H₂O)₃]²⁺配合物(U = 羟基脲阴离子)的最稳定异构体,在密度泛函理论的BP86水平上进行了广泛的几何优化。其中大多数在构象上非常灵活,在5千卡/摩尔的能量范围内有多达12种异构体。最稳定的六配位形式的特征是氧代配体与U的羰基O原子处于反位。从可极化连续介质模型估计的本体溶剂对相对稳定性的影响较小,并且不会显著影响异构体的能量顺序。利用Car-Parrinello分子动力学模拟研究了水溶液中最稳定异构体的配位球细节(配位数、质子化状态)。根据DFT计算,选定的[VO(OH)U(H₂O)₂]⁺异构体之间相互转化的首选机制涉及水分子从第二水合层辅助下,H₂O与OH之间或金属配位球中的O与OH配体之间的质子转移。