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基于单组分主体-客体凝胶因子的强多重响应超分子水凝胶。

Robust multi-responsive supramolecular hydrogel based on a mono-component host-guest gelator.

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Soft Matter. 2018 Jun 27;14(25):5213-5221. doi: 10.1039/c8sm00639c.

Abstract

Supramolecular hydrogels have been widely investigated, but the construction of stimuli-responsive mono-component host-guest hydrogels remains a challenge in that it is still hard to balance the solubility and gelation ability of the gelator. In this work, three azobenzene-modified β-cyclodextrin derivatives with different alkyl lengths (β-CD-Azo-Cn) have been synthesized. The length of the alkyl chain dramatically influences the solubility and gelation ability of β-CD derivatives in water. Among these derivatives, β-CD-Azo-C8 possesses the lowest minimum gelation concentration (MGC). Based on the host-guest interaction between β-CD and azobenzene units in aqueous solution, which is confirmed by UV-visible and ROESY NMR spectra, the gelators self-assemble and further interwine into networks through the hydrogen bonds on the surface of β-CD cavities. Hydrogels formed by mono-component gelators can collapse under external stimuli such as heating, competition guests and hosts, and UV irradiation. When the concentration of the gelator is more than 8 wt%, the hydrogel exhibits good self-supporting ability with a storage modulus higher than 104 Pa. The gel-sol transition temperature of the hydrogel is near body temperature, indicating its potential applications in biological materials.

摘要

超分子水凝胶已经得到了广泛的研究,但是构建对刺激响应的单组分主体-客体水凝胶仍然是一个挑战,因为仍然难以平衡凝胶剂的溶解度和凝胶能力。在这项工作中,合成了三种具有不同烷基链长度的偶氮苯修饰的β-环糊精衍生物(β-CD-Azo-Cn)。烷基链的长度极大地影响了β-CD 衍生物在水中的溶解度和凝胶能力。在这些衍生物中,β-CD-Azo-C8 具有最低的最低凝胶浓度(MGC)。基于水溶液中β-CD 和偶氮苯单元之间的主客体相互作用,这通过紫外可见和 ROESY NMR 光谱得到证实,凝胶剂通过β-CD 腔表面的氢键自组装并进一步交织成网络。单组分凝胶剂形成的水凝胶可以在加热、竞争客体和主体以及紫外辐射等外部刺激下坍塌。当凝胶剂的浓度大于 8wt%时,水凝胶具有良好的自支撑能力,储能模量高于 104Pa。水凝胶的凝胶-溶胶转变温度接近体温,表明其在生物材料中的潜在应用。

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