Functionalization of Polyamide Cages through Peripheral Postmodification

Abstract Polyamide cages are promising receptors in molecular recognition and are potential building blocks of functional materials. Herein, we present a general method to functionalize polyamide cages through peripheral postmodification of brominated polyamide cages, which themselves were able to be synthesized highly efficiently from imine cage precursors through Pinnick oxidation. Suzuki cross-coupling of these brominated cages with aryl boronic acids/esters successfully produced a series of polyamide cages equipped with functional groups, such as hydroxyl, amino, carboxyl, cyano, aldehyde, alkenyl, and solubilizing groups.

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Journal
Organic Letters
Published
2026-09-18
DOI
https://doi.org/10.1021/acs.orglett.6c03495
Primary Topic
Supramolecular Chemistry and Complexes
Type
article
Field-Weighted Citation Impact
0.00

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Functionalization of Polyamide Cages through Peripheral Postmodification

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Organic Letters
Supramolecular Chemistry and Complexes
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Functionalization of Polyamide Cages through Peripheral Postmodification

Liang Ma, Fan Wang, Baoyu Yang, Zhan Zhang, Gen Liu, Yajie Xu, Lamei Wu, Zhengxi Huang, Yingcong Wu, Yanzhu Wei
article en

Abstract

Abstract Polyamide cages are promising receptors in molecular recognition and are potential building blocks of functional materials. Herein, we present a general method to functionalize polyamide cages through peripheral postmodification of brominated polyamide cages, which themselves were able to be synthesized highly efficiently from imine cage precursors through Pinnick oxidation. Suzuki cross-coupling of these brominated cages with aryl boronic acids/esters successfully produced a series of polyamide cages equipped with functional groups, such as hydroxyl, amino, carboxyl, cyano, aldehyde, alkenyl, and solubilizing groups.

Organic Letters
Minzu University of China (CN)
National Natural Science Foundation of China, South-Central University for Nationalities
Sustainable cities and communities
Openalex Percentile: Top 21%
Supramolecular Chemistry and Complexes
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