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一种极其坚韧且基于离子导电天然聚合物的双网络水凝胶。

An extremely tough and ionic conductive natural-polymer-based double network hydrogel.

作者信息

Sun Xingyue, Liang Yongzhi, Ye Lina, Liang Haiyi

机构信息

CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, University of Science and Technology of China, Hefei, Anhui 230026, China.

College of Chemical Engineering, Anhui University, Hefei, Anhui 230601, China.

出版信息

J Mater Chem B. 2021 Sep 29;9(37):7751-7759. doi: 10.1039/d1tb01458g.

Abstract

Hydrogels are widely used in fields such as drug delivery, tissue regeneration, soft robotics and flexible smart electronic devices, yet their application is often limited by unsatisfactory mechanical behaviors. Among the various improvement strategies, double network (DN) hydrogels from synthetic polymers demonstrated impressive mechanical properties, while those from natural polymers were usually inferior. Here, a novel DN hydrogel composed fully of natural polymers exhibiting remarkable mechanical properties and conductivity is prepared by simply soaking a virgin gellan gum/gelatin composite hydrogel in a mixed solution of NaSO and (NH)SO. This hydrogel exhibits a tunable Young's modulus (0.08 to 42.6 MPa), good fracture stress (0.05 to 7.5 MPa), good fracture stretch (1.4 to 7.1), high fracture toughness (up to 27.7 kJ m), and high ionic conductivity (up to 11.4 S m at = 1 kHz). The improvement in the mechanical properties of the DN gel is attributed to the chain-entanglement crosslinking points introduced by SO in the gelatin network and the electrostatic interaction crosslinking points introduced by Na in the gellan gum network. The high ionic conductivity of the DN gel is attributed to the infiltration of the DN gel in a salt solution of high concentration. The developed gellan gum/gelatin DN hydrogel has shown a new pathway towards strengthening natural-polymer-based DN hydrogels and towards potential applications in biomedical engineering and flexible electronic devices.

摘要

水凝胶广泛应用于药物递送、组织再生、软体机器人和柔性智能电子设备等领域,但其应用常常受到机械性能不尽人意的限制。在各种改进策略中,由合成聚合物制成的双网络(DN)水凝胶展现出令人印象深刻的机械性能,而由天然聚合物制成的双网络水凝胶通常较差。在此,通过将原始结冷胶/明胶复合水凝胶简单浸泡在NaSO和(NH)SO的混合溶液中,制备出一种完全由天然聚合物组成、具有卓越机械性能和导电性的新型双网络水凝胶。这种水凝胶表现出可调节的杨氏模量(0.08至42.6兆帕)、良好的断裂应力(0.05至7.5兆帕)、良好的断裂伸长率(1.4至7.1)、高断裂韧性(高达27.7千焦每平方米)以及高离子电导率(在 = 1千赫兹时高达11.4西门子每米)。双网络凝胶机械性能的提升归因于明胶网络中SO引入的链缠结交联点以及结冷胶网络中Na引入的静电相互作用交联点。双网络凝胶的高离子电导率归因于双网络凝胶在高浓度盐溶液中的渗透。所开发的结冷胶/明胶双网络水凝胶为增强基于天然聚合物的双网络水凝胶以及在生物医学工程和柔性电子设备中的潜在应用开辟了一条新途径。

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