Department of Chemistry, Texas A&M University, P.O. Box 30012, College Station, Texas 77842-3012, USA.
J Am Chem Soc. 2010 Dec 15;132(49):17599-610. doi: 10.1021/ja1080794. Epub 2010 Nov 17.
A systematic exploration of the assembly of Mo2(O2C-)4-based metal-organic molecular architectures structurally controlled by the bridging angles of rigid organic linkers has been performed. Twelve bridging dicarboxylate ligands were designed to be of different sizes with bridging angles of 0, 60, 90, and 120° while incorporating a variety of nonbridging functional groups, and these ligands were used as linkers. These dicarboxylate linkers assemble with quadruply bonded Mo-Mo clusters acting as nodes to give 13 molecular architectures, termed metal-organic polygons/polyhedra with metal cluster node arrangements of a linear shape, triangle, octahedron, and cuboctahedron/anti-cuboctahedron. The syntheses of these complexes have been optimized and their structures determined by single-crystal X-ray diffraction. The results have shown that the shape and size of the resulting molecular architecture can be controlled by tuning the bridging angle and size of the linker, respectively. Functionalization of the linker can adjust the solubility of the ensuing molecular assembly but has little or no effect on the geometry of the product. Preliminary gas adsorption, spectroscopic, and electrochemical properties of selected members were also studied. The present work is trying to enrich metal-containing supramolecular chemistry through the inclusion of well-characterized quadruply bonded Mo-Mo units into the structures, which can widen the prospect of additional electronic functionality, thereby leading to novel properties.
我们系统地研究了由 Mo2(O2C-)4 为基础的金属有机分子结构的组装,这些结构受刚性有机连接体的桥接角度控制。我们设计了 12 个桥接二羧酸配体,它们的大小不同,桥接角度分别为 0、60、90 和 120°,同时包含各种非桥接官能团,并将这些配体用作连接体。这些二羧酸连接体与四重键合的 Mo-Mo 簇组装,作为节点,形成 13 种分子结构,称为具有线性形状、三角形、八面体和立方八面体/反立方八面体金属簇节点排列的金属有机多边形/多面体。我们优化了这些配合物的合成,并通过单晶 X 射线衍射确定了它们的结构。结果表明,通过调节连接体的桥接角度和大小,可以控制所得分子结构的形状和尺寸。连接体的功能化可以调节所得分子组装的溶解性,但对产物的几何形状几乎没有影响。我们还研究了选定成员的初步气体吸附、光谱和电化学性质。本工作试图通过将结构中具有良好特性的四重键合的 Mo-Mo 单元包含在内,丰富含金属的超分子化学,从而拓宽额外电子功能的前景,从而产生新的性质。