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多酚基超分子结构的设计与应用:综述。

Supramolecular design and applications of polyphenol-based architecture: A review.

机构信息

College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China; Key Laboratory of Environment Correlative Dietology, Huazhong Agricultural University, Ministry of Education, China.

School of Food and Biological Engineering, Hubei University of Technology, Wuhan 430068, China.

出版信息

Adv Colloid Interface Sci. 2019 Oct;272:102019. doi: 10.1016/j.cis.2019.102019. Epub 2019 Aug 13.

Abstract

Polyphenol-based materials are of wide-spread interest because of the unique properties of the polyphenol itself. Tannic acid, contains high level of galloyl groups, could be coordinated to a range of metal ions to generate robust mental ion-TA films on substrate or even forming hollow capsules. These films or capsules can be used in the field of sensing, separation and catalysis, most importantly in drug/nutraceutical delivery, allowing for the high loading efficiency, high mechanical and thermal stability, pH-responsive disassembly and fluorescence behavior. Additionally, such coating could also provide protection of the sensitive molecules and cells. With the numerous carbonyl and phenolic functional groups, TA has also been demonstrated to form strong hydrogen bonded multilayers with various non-ionic polymers. The properties of the hydrogen-bonded system were highly influenced by the chemical structure of the polymers, which will change the behavior of pH-, temperature- or ionic strength-responsive release of the loading molecules. Additionally, the ionization of galloyl phenol group was attributed to the interaction between TA and other ionic polymers by electrostatic interaction. The electrostatic interaction/hydrogen bonding derived TA/polyme$$%r complexes could deposit on glass slides, microcores or even forming hollow capsules, promising in their applicability to nutraceutical encapsulation, delivery and depot. Notably, polyphenols self-polymerizing could also deposit coatings on different substrates without any exogenous additives, while the comprehensive undertanding about the self-polymerizing mechenism remains unclear. This review provides a promising prospect for utilizing polyphenol-based materials to design versatile architecture in different system, used in the field of chemistry and materials science.

摘要

多酚基材料因其多酚本身的独特性质而受到广泛关注。单宁酸含有高浓度的没食子酰基,可与一系列金属离子配位,在基底上生成坚固的金属离子-TA 膜,甚至形成中空胶囊。这些薄膜或胶囊可用于传感、分离和催化领域,最重要的是在药物/营养输送领域,具有高负载效率、高机械和热稳定性、pH 响应性解体和荧光行为。此外,这种涂层还可以为敏感分子和细胞提供保护。由于单宁酸具有大量的羰基和酚基官能团,因此也已被证明可以与各种非离子聚合物形成强氢键多层结构。氢键体系的性质受聚合物化学结构的强烈影响,这将改变负载分子的 pH、温度或离子强度响应释放的行为。此外,没食子酚基团的电离归因于 TA 与其他离子聚合物之间的静电相互作用。静电相互作用/氢键衍生的 TA/聚合物$$%r 复合物可以沉积在载玻片、微核甚至形成中空胶囊上,有望在营养封装、输送和储存方面得到应用。值得注意的是,多酚可以在没有任何外源添加剂的情况下自组装成涂层,沉积在不同的基底上,而对自组装机制的全面理解仍不清楚。本综述为利用多酚基材料在不同体系中设计多功能结构提供了一个有前景的方向,可应用于化学和材料科学领域。

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