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手性控制的发光铕四面体笼的自组装和自分类。

Stereocontrolled Self-Assembly and Self-Sorting of Luminescent Europium Tetrahedral Cages.

机构信息

§University of Chinese Academy of Sciences, Beijing 100049, PR China.

∥Institute of Chemical Sciences and Engineering, Swiss Federal Institute of Technology, 1015 Lausanne, Switzerland.

出版信息

J Am Chem Soc. 2015 Jul 8;137(26):8550-5. doi: 10.1021/jacs.5b03972. Epub 2015 Jun 25.

Abstract

Coordination-directed self-assembly has become a well-established technique for the construction of functional supramolecular structures. In contrast to the most often exploited transition metals, trivalent lanthanides Ln(III) have been less utilized in the design of polynuclear self-assembled structures despite the wealth of stimulating applications of these elements. In particular, stereochemical control in the assembly of lanthanide chiral cage compounds is not easy to achieve in view of the usually large lability of the Ln(III) ions. We report here the first examples of stereoselective self-assembly of chiral luminescent europium coordination tetrahedral cages and their intriguing self-sorting behavior. Two pairs of R and S ligands are designed on the basis of the pyridine-2,6-dicarboxamide coordination unit, bis(tridentate) L1 and tris(tridentate) L2. Corresponding chiral Eu4(L1)6 and Eu4(L2)4 topological tetrahedral cages are independently assembled via edge- and face-capping design strategies, respectively. The chirality of the ligand is transferred during the self-assembly process to give either Δ or Λ metal stereochemistry. The self-assembled cages are characterized by NMR, high-resolution ESI-TOF-MS, and in one case by X-ray crystallography. Strict control of stereoselectivity is confirmed by CD spectroscopy and NMR enantiomeric differentiation experiments. Narcissistic self-sorting is observed in the self-assembly process when two differently shaped ligands L1 and L2 are mixed. More impressively, distinct self-sorting behavior between Eu4(L1)6 and Eu4(L2)4 coordination cages is observed for the first time when racemic mixtures of ligands are used. We envisage that chiral luminescent lanthanide tetrahedral cages could be used in chiroptical probes\sensors and enantioselective catalysis.

摘要

配位导向的自组装已成为构建功能超分子结构的一种成熟技术。与最常被利用的过渡金属相比,尽管这些元素具有丰富的刺激应用,但三价镧系元素 Ln(III) 在多核自组装结构的设计中使用较少。特别是,鉴于 Ln(III) 离子通常具有较大的不稳定性,镧系手性笼状化合物组装中的立体化学控制不容易实现。我们在这里报告了手性发光铕配位四面体笼的立体选择性自组装及其有趣的自分类行为的第一个例子。两对 R 和 S 配体是基于吡啶-2,6-二甲酰胺配位单元,双(三齿配体)L1 和三(三齿配体)L2 设计的。相应的手性 Eu4(L1)6 和 Eu4(L2)4 拓扑四面体笼分别通过边缘和面封盖设计策略独立组装。配体的手性在自组装过程中被转移,得到 Δ 或 Λ 金属立体化学。自组装笼通过 NMR、高分辨率 ESI-TOF-MS 进行表征,在一种情况下通过 X 射线晶体学进行表征。圆二色光谱和 NMR 对映体区分实验证实了对立体选择性的严格控制。当两种形状不同的配体 L1 和 L2 混合时,观察到自组装过程中的自恋自分类。更令人印象深刻的是,当使用外消旋混合物的配体时,首次观察到 Eu4(L1)6 和 Eu4(L2)4 配位笼之间的独特自分类行为。我们设想手性发光镧系四面体笼可用于手性光学探针\传感器和对映选择性催化。

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