Brown Michael D, Dyke John M, Ferrante Francesco, Levason William, Ogden J Steven, Webster Michael
School of Chemistry, University of Southampton, Southampton SO17 1BJ, UK.
Chemistry. 2006 Mar 8;12(9):2620-9. doi: 10.1002/chem.200501072.
A series of alkali metal azide-crown ether complexes, [Li([12]crown-4)(N3)], [Na([15]crown-5)(N3)], [Na([15]crown-5)(H2O)2]N3, [K([18]crown-6)(N3)(H2O)], [Rb([18]crown-6)(N3)(H2O)], [Cs([18]crown-6)(N3)]2, and [Cs([18]crown-6)(N3)(H2O)(MeOH)], has been synthesised. In most cases, single crystals were obtained, which allowed X-ray crystal structures to be derived. The structures obtained have been compared with molecular structures computed by density functional theory (DFT) calculations. This has allowed the effects of the crystal lattice on the structures to be investigated. Also, a study of the M-N(terminal) metal-azide bond length and charge densities on the metal (M) and terminal nitrogen centre (N(terminal)) in these complexes has allowed the nature of the metal-azide bond to be probed in each case. The bonding in these complexes is believed to be predominantly ionic or ion-dipole in character, with the differences in geometries reflecting the balance between maximising the coordination number of the metal centre and minimising ligand-ligand repulsions. The structures of the crown ether complexes determined in this work show the subtle interplay of such factors. The significant role of hydrogen bonding is also demonstrated, most clearly in the structures of the K and Rb dimers, but also in the chain structure of the hydrated Cs complex.
已合成了一系列碱金属叠氮化物 - 冠醚配合物,即[Li([12]冠 - 4)(N₃)]、[Na([15]冠 - 5)(N₃)]、[Na([15]冠 - 5)(H₂O)₂]N₃、[K([18]冠 - 6)(N₃)(H₂O)]、[Rb([18]冠 - 6)(N₃)(H₂O)]、[Cs([18]冠 - 6)(N₃)]₂以及[Cs([18]冠 - 6)(N₃)(H₂O)(MeOH)]。在大多数情况下,获得了单晶,这使得能够推导其X射线晶体结构。将所获得的结构与通过密度泛函理论(DFT)计算得到的分子结构进行了比较。这使得能够研究晶格对结构的影响。此外,对这些配合物中M - N(末端)金属 - 叠氮键长度以及金属(M)和末端氮中心(N(末端))上的电荷密度的研究,使得能够在每种情况下探究金属 - 叠氮键的性质。据信这些配合物中的键合主要具有离子或离子 - 偶极性质,几何形状的差异反映了在最大化金属中心配位数和最小化配体 - 配体排斥之间的平衡。在这项工作中测定的冠醚配合物的结构显示了这些因素之间的微妙相互作用。氢键的重要作用也得到了证明,在K和Rb二聚体的结构中最为明显,但在水合Cs配合物的链状结构中也很明显。