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基于配位和非配位两种类型低共熔溶剂混合物的超坚韧且高可拉伸双交联低共熔凝胶

Ultra-Tough and Highly Stretchable Dual-Crosslinked Eutectogel Based on Coordinated and Non-Coordinated Two Types Deep Eutectic Solvent Mixture.

作者信息

Yu Kaixuan, Gao Yifeng, Wang Rui, Wu Linlin, Ma Xiaofeng, Fang Ying, Fang Xianli, Dou Qiang

机构信息

College of Materials Science and Engineering, Nanjing Tech University, Nanjing, 211816, P. R. China.

College of Science, Nanjing Forestry University, Nanjing, 210037, P. R. China.

出版信息

Macromol Rapid Commun. 2024 Feb;45(4):e2300557. doi: 10.1002/marc.202300557. Epub 2023 Nov 5.

DOI:10.1002/marc.202300557
PMID:37880914
Abstract

Eutectogels are gaining attention in flexible device applications for their superior ionic conductivity, stability, biocompatibility, and cost-effectiveness. However, most existing eutectogels suffer from low strength and toughness. Herein, ultra-tough and highly stretchable polyacrylamide (PAM) eutectogels featuring a dual-crosslinked network comprising chemical cross-linking and physical cross-linking facilitated by metal coordination bonds and hydrogen bonds are developed. This is achieved through a controlled strategy involving polymerization of acrylamide in a coordinated metal salt-type deep eutectic solvent (DES) combined with a non-coordinated choline chloride (ChCl)-type DES mixture. By varying the molar ratio of these two types of DES, exceptional and adjustable mechanical properties of the resulting eutectogel are achieved, including a high tensile strength ranging from 2.9 to 8.2 MPa and elongation at break ranging from 1725 to 747%, at a 70 wt% DES content. Furthermore, the reversible non-covalent crosslinking in these eutectogels enables self-recovery and self-healing capabilities of eutectogels. The prepared eutectogels also exhibit outstanding ionic conductivity (3.56 mS cm ), making them well-suited for use as strain sensors in human motion detection. The toughening strategy is universally effective for creating tough eutectogels using coordinated metal salt-type DES with various metal ions, as well as a diverse range of coordinatable polymers.

摘要

低共熔凝胶因其优异的离子导电性、稳定性、生物相容性和成本效益,在柔性器件应用中受到关注。然而,现有的大多数低共熔凝胶强度和韧性较低。在此,通过金属配位键和氢键促进化学交联和物理交联的双交联网络,开发出了超韧性和高拉伸性的聚丙烯酰胺(PAM)低共熔凝胶。这是通过一种可控策略实现的,该策略包括在配位金属盐型低共熔溶剂(DES)与非配位氯化胆碱(ChCl)型DES混合物中进行丙烯酰胺的聚合反应。通过改变这两种DES的摩尔比,可以实现所得低共熔凝胶具有优异且可调节的机械性能,包括在70 wt% DES含量下,拉伸强度范围为2.9至8.2 MPa,断裂伸长率范围为1725至747%。此外,这些低共熔凝胶中可逆的非共价交联使低共熔凝胶具有自我恢复和自愈能力。所制备的低共熔凝胶还表现出出色的离子电导率(3.56 mS cm),使其非常适合用作人体运动检测中的应变传感器。该增韧策略对于使用具有各种金属离子的配位金属盐型DES以及多种可配位聚合物来制备坚韧的低共熔凝胶普遍有效。

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