Enantioselective assembly and recognition of heterochiral porous organic cages deduced from binary chiral components

12Citations
Citations of this article
14Readers
Mendeley users who have this article in their library.

Abstract

Chiral recognition and discrimination is not only of significance in biological processes but also a powerful method to fabricate functional supramolecular materials. Herein, a pair of heterochiral porous organic cages (HPOC-1), out of four possible enantiomeric products, with mirror stereoisomeric crystal structures were cleanly prepared by condensation occurring in the exclusive combination of cyclohexanediamine and binaphthol-based tetraaldehyde enantiomers. Nuclear magnetic resonance and luminescence spectroscopy have been employed to monitor the assembly process of HPOC-1, revealing the clean formation of heterochiral organic cages due to the enantioselective recognition of (S,S)-binaphthol towards (R,R)-cyclohexanediamine derivatives and vice versa. Interestingly, HPOC-1 exhibits circularly polarized luminescence and enantioselective recognition of chiral substrates according to the circular dichroism spectral change. Theoretical simulations have been carried out, rationalizing both the enantioselective assembly and recognition of HPOC-1.

Cite

CITATION STYLE

APA

Liu, C., Jin, Y., Qi, D., Ding, X., Ren, H., Wang, H., & Jiang, J. (2022). Enantioselective assembly and recognition of heterochiral porous organic cages deduced from binary chiral components. Chemical Science, 13(23), 7014–7020. https://doi.org/10.1039/d2sc01876d

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free