Homochiral Dodecanuclear Lanthanide “Cage in Cage” for Enantioselective Separation

It is extremely difficult to anticipate the structure and the stereochemistry of a complex, particularly when the ligand is flexible and the metal node adopts diverse coordination numbers. When trivalent lanthanides (LnIII) and enantiopure amino acid ligands are utilized as building blocks, self-ass...

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Veröffentlicht in:Journal of the American Chemical Society 2021-08, Vol.143 (32), p.12560-12566
Hauptverfasser: Zhu, Chengfeng, Tang, Haitong, Yang, Keke, Fang, Yu, Wang, Kun-Yu, Xiao, Zhifeng, Wu, Xiang, Li, Yougui, Powell, Joshua A, Zhou, Hong-Cai
Format: Artikel
Sprache:eng
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Zusammenfassung:It is extremely difficult to anticipate the structure and the stereochemistry of a complex, particularly when the ligand is flexible and the metal node adopts diverse coordination numbers. When trivalent lanthanides (LnIII) and enantiopure amino acid ligands are utilized as building blocks, self-assembly sometimes yields rare chiral polynuclear structures. In this study, an enantiopure carboxyl-functionalized amino acid-based ligand with C 3 symmetry reacts with lanthanum cations to give a homochiral porous coordination cage, (Δ/Λ)12-PCC-57. The dodecanuclear lanthanide cage has an unprecedented octahedral “cage-in-cage” framework. During the self-assembly, the chirality is transferred from the enantiopure ligand and fixed by the binuclear lanthanide cluster to give 12 metal centers that have either Δ or Λ homochiral stereochemistry. The cage exhibits excellent enantioselective separation of racemic alcohols, 2,3-dihydro­quinazolinones, and multiple commercially available drugs. This finding exhibits a rare example of a multinuclear lanthanide complex with a dual-walled topology and homochirality. The highly ordered self-assembly and self-sorting of flexible amino acids and lanthanides shed light on the chiral transformation between different complicated artificial systems that mimic natural enzymes.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.1c03652