Issue 4, 2023

Stimuli-responsive mechanically interlocked molecules constructed from cucurbit[n]uril homologues and derivatives

Abstract

Cucurbit[n]uril supramolecular chemistry has developed rapidly since 2001 when different cucurbit[n]uril homologues (Q[n]) were successfully separated in pure form. The combination of Q[n] cavity size and various types of external stimuli has given birth to numerous types of Q[n]-based mechanically interlocked molecules (MIMs), including (pseudo)rotaxanes, catenanes, dendrimers and poly(pseudo)rotaxanes. In this review article, the important advances in the field of Q[n]-based MIMs over the past two decades are highlighted. This review also describes examples of heterowheel (pseudo)rotaxanes and poly(pseudo)rotaxanes involving Q[n]s, and reflects on the opportunities and challenges of constructing Q[n]-based stimuli-responsive MIMs.

Graphical abstract: Stimuli-responsive mechanically interlocked molecules constructed from cucurbit[n]uril homologues and derivatives

Article information

Article type
Review Article
Submitted
29 Dec 2022
First published
02 Feb 2023

Chem. Soc. Rev., 2023,52, 1428-1455

Stimuli-responsive mechanically interlocked molecules constructed from cucurbit[n]uril homologues and derivatives

J. Liu, K. Chen and C. Redshaw, Chem. Soc. Rev., 2023, 52, 1428 DOI: 10.1039/D2CS00785A

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