Issue 41, 2024, Issue in Progress

Covalent organic polyrotaxanes based on β-cyclodextrin for iodine capture

Abstract

Herein, covalent organic polyrotaxanes (COPRs) were integrated with supermolecule self-assembly and dynamic imine bond formation to act as absorbents that captured radioactive iodine from water. The aromatic building blocks were initially complexed with β-cyclodextrin (β-CD) to form pseudorotaxanes, which were then condensed with aromatic tri-aldehyde via mechanical grinding and solvothermal synthesis in sequence. The threading of β-CD throughout the polymer skeleton effectively reduced the usage of expensive building blocks and significantly lowered the cost, while also remarkably enhancing the skeleton polarity, which is closely related to many special applications. Impressively, the threading of CD improved the water dispersibility of COPRs, which displayed an abnormally high iodine adsorption capacity. This novel synthetic strategy allows the incorporation of mechanically interlocked CDs into porous polymeric materials, which provides access to low-cost preparations of COPRs with a brand new structure for specific applications.

Graphical abstract: Covalent organic polyrotaxanes based on β-cyclodextrin for iodine capture

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Article information

Article type
Paper
Submitted
23 Jul 2024
Accepted
28 Aug 2024
First published
23 Sep 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 30077-30083

Covalent organic polyrotaxanes based on β-cyclodextrin for iodine capture

X. Guo, J. Yu, L. Ma, J. Yuan, T. Guo, Y. Ma, S. Xiao, J. Bai and B. Zhou, RSC Adv., 2024, 14, 30077 DOI: 10.1039/D4RA05339G

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