首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Self-Optimizing Charge-Transfer Energy Phenomena in Metallosupramolecular Complexes by Dynamic Constitutional Self-Sorting
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Self-Optimizing Charge-Transfer Energy Phenomena in Metallosupramolecular Complexes by Dynamic Constitutional Self-Sorting

机译:动态组成自选在金属超分子配合物中的自优化电荷转移能现象。

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In this paper we report an extended series of 2,6-(iminoarene)pyridine-type Zn~(II) complexes [(L_(ii))_2Zn]~(II), which were surveyed for their ability to self-exchange both their ligands and their aromatic arms and to form different homoduplex and heteroduplex complexes in solution. The self-sorting of heteroduplex complexes is likely to be the result of geometric constraints. Whereas the imine-exchange process occurs quantitatively in 1:1 mixtures of [(L_(ii))_2Zn]~(II) complexes, the octahedral coordination process around the metal ion defines spatial-frustrated exchanges that involve the selective formation of heterocomplexes of two, by two different substituents; the bulkiest ones (pyrene in principle) specifically interact with the pseudoterpyridine core, sterically hindering the least bulky ones, which are intermolecularly stacked with similar ligands of neighboring molecules. Such a self-sorting process defined by the specific self-constitution of the ligands exchanging their aromatic substituents is self-optimized by a specific control over their spatial orientation around a metal center within the complex. They ultimately show an improved charge-transfer energy function by virtue of the dynamic amplification of self-optimized heteroduplex architectures. These systems therefor illustrate the convergence of the combinatorial self-sorting of the dynamic combinatorial libraries (DCLs) strategy and the constitutional self-optimized function.
机译:在本文中,我们报告了一个扩展系列的2,6-(亚氨基芳烃)吡啶型Zn〜(II)配合物[(L_(ii))_ 2Zn]〜(II),并对其各自的自交换能力进行了研究。它们的配体和它们的芳族臂,并在溶​​液中形成不同的同双链和异双链复合物。异源双链体复合物的自分类很可能是几何约束的结果。亚胺交换过程在[(L_(ii))_ 2Zn]〜(II)配合物的1:1混合物中定量发生,而围绕金属离子的八面体配位过程定义了空间受阻的交换,涉及选择性地形成两个不同的取代基;最笨重的分子(原则上为py)与伪吡啶核互作特效,在空间上阻碍了最小巧的核,这些分子在分子间与相邻分子的类似配体堆叠。通过对配位体围绕配合物内金属中心的空间取向的特定控制,对由配体交换其芳族取代基的特定自组成所定义的这种自分选过程进行了自我优化。它们通过自我优化的异源双链结构的动态放大,最终显示出改善的电荷转移能量功能。因此,这些系统说明了动态组合库(DCL)策略的组合自排序和构造自优化功能的融合。

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