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Mechanochemical strengthening of a synthetic polymer in response to typically destructive shear forces

机译:响应于通常具有破坏性的剪切力对合成聚合物进行机械化学强化

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摘要

High shear stresses are known to trigger destructive bond-scission reactions in polymers. Recent work has shown that the same shear forces can be used to accelerate non-destructive reactions in mechanophores along polymer backbones, and it is demonstrated here that such mechanochemical reactions can be used to strengthen a polymer subjected to otherwise destructive shear forces. Polybutadiene was functionalized with dibromocyclopropane mechanophores, whose mechanical activation generates allylic bromides that are crosslinked in situ by nucleophilic substitution reactions with carboxylates. The crosslinking is activated efficiently by shear forces both in solvated systems and in bulk materials, and the resulting covalent polymer networks possess moduli that are orders-of-magnitude greater than those of the unactivated polymers. These molecular-level responses and their impact on polymer properties have implications for the design of materials that, like biological materials, actively remodel locally as a function of their physical environment.
机译:已知高剪切应力会触发聚合物中的破坏性键断裂反应。最近的工作表明,相同的剪切力可用于加速沿聚合物主链的机械基团中的非破坏性反应,并且此处证明了这种机械化学反应可用于增强承受破坏性剪切力的聚合物。聚丁二烯用二溴环丙烷机械官能团官能化,其机械活化产生烯丙基溴化物,该溴化物通过与羧酸盐的亲核取代反应原位交联。交联被溶剂化体系和块状材料中的剪切力有效地活化,并且所得的共价聚合物网络具有的模量比未活化的聚合物的量级大。这些分子水平的反应及其对聚合物性能的影响对材料的设计产生了影响,这些材料像生物材料一样,会根据其物理环境主动进行局部重塑。

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