Castro-Rodriguez Ingrid, Olsen Kristian, Gantzel Peter, Meyer Karsten
Department of Chemistry and Biochemistry, University of California-San Diego, 9500 Gilman Drive MC 0358, La Jolla, CA 92093-0358, USA.
J Am Chem Soc. 2003 Apr 16;125(15):4565-71. doi: 10.1021/ja028342n.
The synthesis and spectroscopic characterization of the mononuclear uranium complex [((ArO)(3)tacn)U(III)(NCCH(3))] is reported. The uranium(III) complex reacts with organic azides to yield uranium(IV) azido as well as uranium(V) imido complexes, [((ArO)(3)tacn)U(IV)(N(3))] and [((ArO)(3)tacn)U(V)(NSi(CH(3))(3))]. Single-crystal X-ray diffraction, spectroscopic, and computational studies of this analogous series of uranium tris-aryloxide complexes supported by triazacyclononane are described. The hexadentate, tris-anionic ligand coordinates to the large uranium ion in unprecedented fashion, engendering coordinatively unsaturated and highly reactive uranium centers. The macrocyclic triazacyclononane tris-aryloxide derivative occupies six coordination sites, with the three aryloxide pendant arms forming a trigonal plane at the metal center. DFT quantum mechanic methods were applied to rationalize the reactivity and to elucidate the electronic structure of the newly synthesized compounds. It is shown that the deeply colored uranium(III) and uranium(V) species are stabilized via pi-bonding interaction, involving uranium f-orbitals and the axial acetonitrile and imido ligand, respectively. In contrast, the bonding in the colorless uranium(IV) azido complex is purely ionic in nature. The magnetism of the series of complexes with an [N3O3-N(ax)] core structure and oxidation states +III, +IV, and +V is discussed in context of the electronic structures.
报道了单核铀配合物[((ArO)(3)tacn)U(III)(NCCH(3))]的合成及光谱表征。该铀(III)配合物与有机叠氮化物反应生成铀(IV)叠氮化物以及铀(V)亚氨基配合物[((ArO)(3)tacn)U(IV)(N(3))]和[((ArO)(3)tacn)U(V)(NSi(CH(3))(3))]。描述了由三氮杂环壬烷支持的这一系列类似的铀三芳氧基配合物的单晶X射线衍射、光谱和计算研究。六齿三阴离子配体以前所未有的方式与大的铀离子配位,产生配位不饱和且高反应性的铀中心。大环三氮杂环壬烷三芳氧基衍生物占据六个配位位点,三个芳氧基侧臂在金属中心形成一个三角平面。应用密度泛函量子力学方法来合理化反应性并阐明新合成化合物的电子结构。结果表明,深色的铀(III)和铀(V)物种分别通过涉及铀f轨道与轴向乙腈和亚氨基配体的π键相互作用而稳定。相比之下,无色的铀(IV)叠氮化物配合物中的键本质上是纯离子键。在电子结构的背景下讨论了具有[N3O3-N(ax)]核心结构且氧化态为+III、+IV和+V的一系列配合物的磁性。