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自分散β-环糊精接枝纤维素微凝胶的简便合成及其用于香草醛的缓释。

Facile synthesis of self-dispersed β-cyclodextrin-coupled cellulose microgel for sustained release of vanillin.

机构信息

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an 710048, Shaanxi, China; Key Laboratory of Functional Textile Material and Product, Xi'an Polytechnic University, Ministry of Education, Xi'an 710048, Shaanxi, China; Zhejiang QIT Testing Technology Service Co., Ltd, Shaoxing 312081, Zhejiang, China.

School of Textile Science and Engineering, Xi'an Polytechnic University, Xi'an 710048, Shaanxi, China.

出版信息

Int J Biol Macromol. 2022 May 31;208:70-79. doi: 10.1016/j.ijbiomac.2022.03.071. Epub 2022 Mar 17.

Abstract

A self-dispersed β-cyclodextrin-coupled cellulose (β-CD-Cel) microgel was firstly synthesized via chemically coupling cellulose and β-CD in NaOH/urea aqueous solution. Following, after encapsulating the hydrophobic vanillin molecules into the cavities of β-CD-Cel microgel through host-guest interaction, cellulose-based long-lasting fragrance-released complex was obtained. β-CD was mainly bonded onto the hydroxyl groups at C in the AGU units of cellulose, and about 0.5 β-CD molecule were introduced into the AGU unit when cellulose skeleton contained the β-CD content of 19.33%. FTIR, H NMR, XRD, and UV-Vis provided evidences for the encapsulation of vanillin in the cavity of β-CD-Cel, and the encapsulating efficiency of vanillin for the β-CD-Cel inclusion complex was upped to 86.9%, which exceeded that of single β-CD small molecule encapsulating fragrance. Benefiting from the reversible host-guest interaction between β-CD and vanillin molecule, the continuous fragrance release time could exceed 196 h, and the sustained release behavior of β-CD-Cel complex could be adjusted by temperature. Also, the fragrance-released β-CD-Cel composite film showed high transparency, strong water resistance, and good flexibility. The vanillin retention of the composite film can keep 40% after soaking in ethanol solution for 96 h. This study will provide a new approach for the development of biomass functional coating.

摘要

一种自分散的β-环糊精接枝纤维素(β-CD-Cel)微凝胶通过在 NaOH/尿素水溶液中化学偶联纤维素和β-环糊精首次合成。随后,通过主客体相互作用将疏水性香草醛分子包封到β-CD-Cel 微凝胶的空腔中,得到基于纤维素的长效释放香味复合物。β-CD 主要键合到纤维素的 AGU 单元的 C 上的羟基上,当纤维素骨架含有 19.33%的 β-CD 含量时,每个 AGU 单元引入约 0.5 个β-CD 分子。FTIR、H NMR、XRD 和 UV-Vis 为香草醛包封在β-CD-Cel 空腔中提供了证据,并且β-CD-Cel 包合物对香草醛的包封效率提高到 86.9%,超过了单一β-CD 小分子包封香味的效率。得益于β-CD 和香草醛分子之间的可逆主客体相互作用,连续释放香味的时间可以超过 196 小时,并且可以通过温度调节β-CD-Cel 复合物的持续释放行为。此外,释放香味的β-CD-Cel 复合膜具有高透明度、强耐水性和良好的柔韧性。复合膜在乙醇溶液中浸泡 96 小时后,香草醛保留率仍保持在 40%。这项研究为开发生物质功能涂层提供了一种新方法。

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