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基于超分子 PVA/酚相互作用的弹性和热可逆性长胶。

Elastic and Thermoreversible Iongels by Supramolecular PVA/Phenol Interactions.

机构信息

Instituto de Desarrollo Tecnológico para la Industria Química (INTEC) CONICET, Güemes 3450, Santa Fe, 3000, Argentina.

Departamento de Química Orgánica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba IPQA-CONICET, Haya de la Torre y Medina Allende, Córdoba, 5000, Argentina.

出版信息

Macromol Biosci. 2020 Nov;20(11):e2000119. doi: 10.1002/mabi.202000119. Epub 2020 Jun 28.

Abstract

Iongels have attracted much attention over the years as ion-conducting soft materials for applications in several technologies including stimuli-responsive drug release and flexible (bio)electronics. Nowadays, iongels with additional functionalities such as electronic conductivity, self-healing, thermo-responsiveness, or biocompatibility are actively being searched for high demanding applications. In this work, a simple and rapid synthetic pathway to prepare elastic and thermoreversible iongels is presented. These iongels are prepared by supramolecular crosslinking between polyphenols biomolecules with a hydroxyl-rich biocompatible polymer such as poly(vinyl alcohol) (PVA) in the presence of ionic liquids. Using this strategy, a variety of iongels are obtained by combining different plant-derived polyphenol compounds (PhC) such as gallic acid, pyrogallol, and tannic acid with imidazolium-based ionic liquids, namely 1-ethyl-3-methylimidazolium dicyanamide and 1-ethyl-3-methylimidazolium bromide. A suite of characterization tools is used to study the structural, morphological, mechanical, rheological, and thermal properties of the supramolecular iongels. These iongels can withstand large deformations (40% under compression) with full recovery, revealing reversible transitions from solid to liquid state between 87 and 125 °C. Finally, the polyphenol-based thermoreversible iongels show appropriated properties for their potential application as printable electrolytes for bioelectronics.

摘要

多年来,离子凝胶作为导离子的软材料引起了广泛关注,其应用包括刺激响应型药物释放和柔性(生物)电子学等多个领域。如今,人们积极寻找具有额外功能的离子凝胶,如导电性、自修复、温敏性或生物相容性,以满足高要求的应用需求。在这项工作中,提出了一种简单快速的合成弹性和热可逆离子凝胶的方法。这些离子凝胶是通过多酚生物分子与羟基丰富的生物相容性聚合物(如聚乙烯醇)之间的超分子交联,在离子液体的存在下制备的。通过这种策略,可以通过组合不同的植物来源多酚化合物(PhC),如没食子酸、焦没食子酸和鞣酸,与基于咪唑的离子液体,即 1-乙基-3-甲基咪唑二氰胺和 1-乙基-3-甲基咪唑溴化物,来获得各种离子凝胶。采用一系列表征工具研究了超分子离子凝胶的结构、形态、力学、流变和热性能。这些离子凝胶可以承受 40%的大变形压缩,具有完全恢复的能力,并在 87 至 125°C 之间显示出从固态到液态的可逆转变。最后,基于多酚的热可逆离子凝胶显示出适合作为生物电子学可印刷电解质的特性。

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