Exploring the principles of self-healing polymers based on halogen bond interactions

Robin Kampes, J. Meurer, Julian Hniopek, Carolin Bernt, S. Zechel, M. Schmitt, J. Popp, M. Hager, U. Schubert
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引用次数: 1

Abstract

In this study, novel self-healing polymers based on halogen bonds as reversible supramolecular crosslinking moieties are presented. The reversible crosslinking is facilitated by a polymer-bound bidentate halogen bond donor entity in combination with small molecule acceptor suberic acid. The binding strength of the crosslinking can be tuned via deprotonation of the diacid crosslinker. The material characteristics are investigated with several methods such as NMR and Raman spectroscopy, thermogravimetric analysis and differential scanning calorimetry as well as rheology. The tactile profile measurements have been utilized to monitor the scratch healing ability of the polymer networks revealing excellent healing efficiencies up to 99% within 2 h at a temperature of 100°C. Thus, the self-healing ability of halogen bond polymers could be quantified for the first time.
探索基于卤素键相互作用的自愈聚合物的原理
在这项研究中,提出了一种基于卤素键作为可逆超分子交联基团的自修复聚合物。可逆交联是由聚合物结合的双齿卤素键给体与小分子受体亚酰基酸结合而促进的。通过二酸交联剂的去质子化可以调节交联的结合强度。采用核磁共振、拉曼光谱、热重分析、差示扫描量热分析和流变学等方法研究了材料的特性。触觉轮廓测量已被用于监测聚合物网络的划痕愈合能力,显示在100°C的温度下,2小时内愈合效率高达99%。从而首次定量研究了卤素键聚合物的自愈能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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