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

化学 镧系元素 超分子化学 自组装 结晶学 手性(物理) 配体(生物化学) 立体化学 晶体结构 离子 有机化学 物理 生物化学 Nambu–Jona Lasinio模型 手征对称破缺 受体 量子力学 夸克
作者
Liang‐Liang Yan,Chunhong Tan,Guang‐Lu Zhang,Li‐Peng Zhou,Jean‐Claude G. Bünzli,Qing‐Fu Sun
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:137 (26): 8550-8555 被引量:208
标识
DOI:10.1021/jacs.5b03972
摘要

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.
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