超分子化学
水溶液
自组装
结晶度
化学工程
非对映体
对映选择合成
分子
化学
分子识别
材料科学
有机化学
组合化学
结晶学
催化作用
工程类
作者
Dongxu Cui,Yun Geng,Junning Kou,Guo‐Gang Shan,Chunyi Sun,Kunhao Zhang,Xin‐Long Wang,Zhong‐Min Su
标识
DOI:10.1038/s41467-022-31785-4
摘要
The synthesis of ultra-stable chiral porous organic cages (POCs) and their controllable chiral self-sorting at the molecular and supramolecular level remains challening. Herein, we report the design and synthesis of a serial of axially chiral porous aromatic cages (PAC 1-S and 1-R) with high chemical stability. The theoretical and experimental studies on the chiral self-sorting reveal that the exclusive self-recognition on cage formation is an enthalpy-driven process while the chiral narcissistic and self-sorting on supramolecular assembly of racemic cages can be precisely regulated by π-π and C-H…π interactions from different solvents. Regarding the chemical stability, the crystallinity of PAC 1 is maintained in aqueous solvents, such as boiling water, high-concentrated acid and alkali; mixtures of solvents, such as 1 M H2SO4/MeOH/H2O solution, are also tolerated. Investigations on the chiral sensing performance show that PAC 1 enables enantioselective recognition of axially chiral biaryl molecules.
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