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多功能自修复离聚物凝胶的超分子组装:智能导电和优异润滑材料。

Multifunctional Self-Healing Ionogels from Supramolecular Assembly: Smart Conductive and Remarkable Lubricating Materials.

机构信息

School of Chemical Engineering and Technology , Tianjin University , Tianjin 300350 , China.

School of Material Science and Engineering , Beijing Institute of Technology , Beijing 100081 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 26;10(51):44706-44715. doi: 10.1021/acsami.8b15722. Epub 2018 Dec 14.

Abstract

Self-healing ionogel is a promising smart material because of its high conductivity and reliable stimuli responsiveness upon mechanical damage. However, self-healing ionogels possessing rapid, complete recovery properties and multifunctionality are still limited. Herein, we designed a new d-gluconic acetal-based gelator (PB8) bearing a urea group in the alkyl side chain. Interestingly, the balance between hydrophilicity and hydrophobicity of the molecule is achieved. Thus, PB8 could form transparent ionogels because of its excellent affinity to ionic liquids (ILs), which exhibited appropriate mechanical strength, high viscoelasticity, and efficient self-healing properties. The presence of synergistic effects from hydrogen bonding, π-π stacking, and interactions between the urea-containing side chains was responsible for the self-assembly of gelators in ILs and the self-healing property mainly related to the side chains of PB8. Interestingly, the transparent PB8-IL4 ionogel possessed high conductivity and mechanical strength, moldable and injectable properties, and rapid and complete self-healing characteristics (complete recovery within 14 min), which showed excellent performance as a smart ionic conductor. Furthermore, the self-healing PB8-based ionogels with anticorrosion properties are a remarkable lubricating material in the steel-steel contact and exhibited excellent lubricating performances. Overall, an efficient PB8-based ionogel with self-healing properties has been developed for potential use both as a smart electrical conductor and as a high-performance lubricating material. The unique structure of PB8 bearing a urea group in the side chain is found to be responsible for the multifunctional ionogel formation.

摘要

自修复离子凝胶是一种很有前途的智能材料,因为它具有高导电性和对机械损伤的可靠刺激响应。然而,具有快速、完全恢复特性和多功能性的自修复离子凝胶仍然有限。在这里,我们设计了一种新的基于 D-葡萄糖酸缩醛的凝胶剂(PB8),其烷基侧链上带有脲基。有趣的是,分子的亲水性和疏水性达到了平衡。因此,PB8 由于其与离子液体(ILs)的优异亲和力而能够形成透明离子凝胶,其表现出适当的机械强度、高粘弹性和高效的自修复性能。氢键、π-π 堆积和含脲侧链之间的相互作用的协同效应是凝胶剂在 ILs 中自组装和自修复性能的主要原因,这主要与 PB8 的侧链有关。有趣的是,透明的 PB8-IL4 离子凝胶具有高导电性和机械强度、可模塑和可注射性以及快速和完全的自修复特性(在 14 分钟内完全恢复),表现出作为智能离子导体的优异性能。此外,具有防腐性能的自修复 PB8 基离子凝胶是钢-钢接触中的一种出色的润滑材料,表现出优异的润滑性能。总体而言,已经开发出一种具有自修复性能的高效 PB8 基离子凝胶,有望用作智能电导体和高性能润滑材料。在侧链上带有脲基的独特 PB8 结构被发现负责多功能离子凝胶的形成。

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