Stimuli‐Responsive Catenane‐Branched Dendrimers with Tunable Dimension for Reversible Guest Binding

Y Yu Wang Z Zhiwen Gao X Xue Li P Pei‐Pei Jia (State Key Laboratory of Petroleum Molecular & Process Engineering Shanghai Key Laboratory of Green Chemistry and Chemical Processes Shanghai Frontiers Science Center of Molecule Intelligent Syntheses Liwa Institute of Skin Health, Wuhu Hospital Affiliated to East China Normal University, School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 P. R. China) X Xiao‐Qin Xu (School of Chemistry and Molecular Engineering East China Normal University Shanghai China) Y Yefei Jiang (Shanghai Key Laboratory of Green Chemistry and Chemical Processes State Key Laboratory of Petroleum Molecular and Process Engineering School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 China) X Xu‐Qing Wang (Faculty of Chemical Engineering and Energy Technology Shanghai Institute of Technology Shanghai China) W Wei Wang H Hai‐Bo Yang (School of Chemistry and Molecular Engineering East China Normal University Shanghai China)

Abstract

Abstract To tackle the challenge of the precise construction of catenane‐based mechanically interlocked macromolecules with well‐defined topological arrangements, starting from a novel [2]catenane building block with dendrimer growth sites, catenane‐branched dendrimers have been precisely constructed via an efficient and controllable divergent approach. Notably, to the best of our knowledge, the third‐generation dendrimer which consists of twenty‐one [2]catenane branches is the most complicated discrete [2]catenane oligomer synthesized to date. Interestingly, the switchable coconformation transformations of [2]catenane branches triggered by sodium ions and cryptands lead to an integrated and amplified expansion–contraction motion of the resultant dendrimers, achieving reversible size regulation at the nanoscale. The unique recognition sites of the resultant catenane‐branched dendrimers also facilitate the reversible binding of drug and dye guests. This work not only addresses the synthetic challenge of highly branched catenane dendrimers but also provides a new platform for dynamic supramolecular functional materials.

Article Details

Volume / Issue Vol. 64, Issue 33
Published August 11, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

Y

Yu Wang

Z

Zhiwen Gao

X

Xue Li

P

Pei‐Pei Jia

State Key Laboratory of Petroleum Molecular & Process Engineering Shanghai Key Laboratory of Green Chemistry and Chemical Processes Shanghai Frontiers Science Center of Molecule Intelligent Syntheses Liwa Institute of Skin Health, Wuhu Hospital Affiliated to East China Normal University, School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 P. R. China

X

Xiao‐Qin Xu

School of Chemistry and Molecular Engineering East China Normal University Shanghai China

Y

Yefei Jiang

Shanghai Key Laboratory of Green Chemistry and Chemical Processes State Key Laboratory of Petroleum Molecular and Process Engineering School of Chemistry and Molecular Engineering East China Normal University Shanghai 200062 China

X

Xu‐Qing Wang

Faculty of Chemical Engineering and Energy Technology Shanghai Institute of Technology Shanghai China

W

Wei Wang

H

Hai‐Bo Yang

School of Chemistry and Molecular Engineering East China Normal University Shanghai China