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Mechanoresponsive healable metallosupramolecular polymers

机译:机械响应性可修复金属超分子聚合物

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摘要

The development of polymers that possess superb mechanical properties and at the same time are capable of sensing damage and self-healing is presented. Copper-catalyzed azide-alkyne cycloaddition (CuAAC) based tridentate ligand 2,6-bis(1,2,3-triazol-4-yl)pyridine (BTP) and covalent mechanophore spiropyran (SP) units are incorporated into the polymer backbone to prepare ligand macromolecule. Upon coordinating with transition or lanthanide metal salts, metallosupramolecular films with phased-separated soft/hard morphology are spontaneously formed. The resulting materials show a rare combination of strong, tough, and elastic mechanical properties and are able to sense damage by changing optical properties. The Zn~(2+)-containing material can self-heal in the presence of solvent and fully restore its mechanical properties. The underlying structure-property relationship is unveiled. In particular, the interplay between the covalent SP mechanophore and the noncovalent metal-ligand interactions and their hard phase is demonstrated.
机译:提出了具有极好的机械性能并同时能够感知损伤和自我修复的聚合物的开发。基于铜催化的叠氮化物-炔烃环加成(CuAAC)的三齿配体2,6-双(1,2,3-三唑-4-基)吡啶(BTP)和共价机理螺吡喃(SP)单元被引入到聚合物主链中准备配体大分子。与过渡金属或镧系金属盐配位后,自然形成具有相分离的软/硬形态的金属超分子膜。所得材料显示出强力,韧性和弹性机械性能的罕见组合,并且能够通过改变光学性能来感知损坏。含Zn〜(2+)的材料可在溶剂存在下自愈,并完全恢复其机械性能。揭示了潜在的结构-属性关系。特别地,证明了共价SP机制和非共价金属-配体相互作用及其硬相之间的相互作用。

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