Chiral porous organic frameworks: synthesis, chiroptical properties, and asymmetric organocatalytic applications
DATE:
2023-06-27
UNIVERSAL IDENTIFIER: http://hdl.handle.net/11093/5044
EDITED VERSION: https://www.mdpi.com/2073-4344/13/7/1042
UNESCO SUBJECT: 2301 Química Analítica ; 2306 Química Orgánica ; 2306.04 Química de Los Compuestos Bicíclicos
DOCUMENT TYPE: article
ABSTRACT
Chiral porous organic frameworks have emerged in the last decade as candidates for heterogeneous asymmetric organocatalysis. This review aims to provide a summary of the synthetic strategies towards the design of chiral organic materials, the characterization techniques used to evaluate their chirality, and their applications in asymmetric organocatalysis. We briefly describe the types of porous organic frameworks, including crystalline (covalent organic frameworks, COFs) and amorphous (conjugated microporous polymers, CMPs; covalent triazine frameworks, CTFs and porous aromatic frameworks, PAFs) materials. Furthermore, the strategies reported to incorporate chirality in porous organic materials are presented. We finally focus on the applications of chiral porous organic frameworks in asymmetric organocatalytic reactions, summarizing and categorizing all the available literature in the field.