MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions and Department of Applied Chemistry, School of Science, Northwestern Polytechnical University, Xi'an, 710072, China.
Department of Chemistry, University of California, Irvine, CA, 92697, USA.
Macromol Rapid Commun. 2019 Sep;40(17):e1800909. doi: 10.1002/marc.201800909. Epub 2019 Mar 12.
The dynamic nature of supramolecules makes them useful in the fields of smart devices. The combination of multiple dynamic interactions in one material may bring some enhanced properties in mechanical property, self-healing property, or recyclability. Thus, it is significantly meaningful to design new materials with multi-dynamic bonds and clarify their bonding mechanisms. Here, a novel three-armed polymer based on benzene-1,3,5-tricarboxamide (BTA) is developed and the polymer could be further complexed by metal ions to form dynamic zinc-imidazole interactions. In this system, BTA is located in the center, and the ligand-functionalized monomer is copolymerized with n-butyl acrylate to form three chains. This is the first time BTA is introduced to a self-healing system to endow the polymer with assembly and self-healing properties. The composition, chemical structure, assembly behavior, mechanical properties, and self-healing properties of the polymer are investigated. It is revealed that the assembly behavior of the polymer depends on the BTA contents and time. The mechanical property can be easily tuned by ligand/metal ratio and is significantly adjusted by the polymer chain length and environment humidity. Long polymer chains not only contribute to good mechanical property but also promote the self-healing process due to the effective physical entanglement.
超分子的动态性质使它们在智能设备领域非常有用。在一种材料中结合多种动态相互作用可能会带来一些增强的性质,如机械性能、自修复性能或可回收性。因此,设计具有多动态键的新材料并阐明其键合机制具有重要意义。在这里,开发了一种基于苯-1,3,5-三羧酸酰胺(BTA)的新型三臂聚合物,该聚合物可以进一步与金属离子络合形成动态锌-咪唑相互作用。在该体系中,BTA 位于中心位置,配体功能化单体与正丁基丙烯酸酯共聚形成三条链。这是 BTA 首次被引入自修复体系,赋予聚合物组装和自修复性能。研究了聚合物的组成、化学结构、组装行为、力学性能和自修复性能。结果表明,聚合物的组装行为取决于 BTA 的含量和时间。通过配体/金属比可以很容易地调节力学性能,并且通过聚合物链长和环境湿度可以显著调节力学性能。长聚合物链不仅有助于获得良好的力学性能,而且由于有效的物理缠结,也促进了自修复过程。