对映体药物
镧系元素
化学
对映选择合成
同手性
手性(物理)
结晶学
手性配体
拓扑(电路)
配体(生物化学)
立体化学
对映体
组合化学
有机化学
催化作用
离子
手征对称破缺
受体
组合数学
物理
量子力学
生物化学
数学
Nambu–Jona Lasinio模型
夸克
作者
Chengfeng Zhu,Haitong Tang,Ke‐Ke Yang,Yu Fang,Kunyu Wang,Zhifeng Xiao,Xiang Wu,Yougui Li,Joshua A. Powell,Hong‐Cai Zhou
摘要
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 C3 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.
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