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基于γ-环糊精的拓扑交联水凝胶

Topologically-crosslinked hydrogels based on γ-cyclodextrins.

作者信息

Sapsford Ella, Michieletto Davide

机构信息

School of Physics and Astronomy, University of Edinburgh, Edinburgh, UK.

MRC Human Genetics Unit, Institute of Genetics and Cancer, University of Edinburgh, Edinburgh, UK.

出版信息

Commun Chem. 2025 Apr 2;8(1):99. doi: 10.1038/s42004-025-01469-3.

Abstract

Biomimetic strategies are increasingly the focus of materials scientists looking to improve or invent new materials. Topology is an important component in nature, but the synthetic incorporation of mechanically interlocked moieties is challenging. Rotaxanes are one of the simplest ways to introduce topological complexity to a polymer gel. As mobile crosslinks, the rotaxane's cyclic host molecules redistributes applied stress typically endowing the material with enhanced toughness and stretchability. Gamma-cyclodextrin (γ-CD) is a larger homologue of alpha-cyclodextrin (α-CD) and it allows uncommon double-threaded topologies to be synthesised without metal templating removing additional synthetic steps and toxicity. γ-CDs are good candidates for a slide-ring crosslinkers that, added to a commodity or novel polymer, could augment the mechanical properties of hydrogels in novel ways with respect to traditional polyrotaxanes and slide-ring gels (SRGs). Despite the rapid uptake of γ-CD as novel mechanical crosslinkers, the body of literature is currently limited. In this paper we thus review recent works on γ-CD functionalised materials, offer a comparison with α-CD materials, and compare the mechanical performance of the papers discussed in plots of material properties. Finally, we discuss potential directions and unique uses of γ-CD uncommon double-threaded topology.

摘要

仿生策略日益成为材料科学家关注的焦点,他们希望改进或发明新材料。拓扑结构是自然界中的一个重要组成部分,但机械互锁部分的合成引入具有挑战性。轮烷是将拓扑复杂性引入聚合物凝胶的最简单方法之一。作为可移动的交联剂,轮烷的环状主体分子会重新分布施加的应力,通常会使材料具有更高的韧性和拉伸性。γ-环糊精(γ-CD)是α-环糊精(α-CD)的一种更大的同系物,它可以在无需金属模板的情况下合成罕见的双线程拓扑结构,从而省去额外的合成步骤和毒性。γ-环糊精是滑环交联剂的良好候选物,添加到商品聚合物或新型聚合物中,可以以新颖的方式增强水凝胶相对于传统聚轮烷和滑环凝胶(SRG) 的机械性能。尽管γ-环糊精作为新型机械交联剂的应用迅速增加,但目前的文献数量有限。因此,在本文中,我们回顾了γ-环糊精功能化材料的近期研究工作,与α-环糊精材料进行了比较,并在材料性能图中比较了所讨论论文的机械性能。最后,我们讨论了γ-环糊精罕见双线程拓扑结构的潜在方向和独特用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e37/11965564/df524354c96d/42004_2025_1469_Fig1_HTML.jpg

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