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Molecular engineering of mechanophore activity for stress-responsive polymeric materials

机译:应力响应性高分子材料的机械力活性分子工程

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摘要

Force reactive functional groups, or mechanophores, have emerged as the basis of a potential strategy for sensing and countering stress-induced material failure. The general utility of this strategy is limited, however, because the levels of mechanophore activation in the bulk are typically low and observed only under large, typically irreversible strains. Strategies that enhance activation are therefore quite useful. Molecular-level design principles by which to engineer enhanced mechanophore activity are reviewed, with an emphasis on quantitative structure–activity studies determined for a family of gem-dihalocyclopropane mechanophores.
机译:力反应性官能团(或称机械力基团)已成为传感和应对应力引起的材料失效的潜在策略的基础。但是,此策略的一般用途受到限制,因为整体中的机械力激活水平通常较低,并且仅在较大的,通常不可逆的菌株下才能观察到。因此,增强激活的策略非常有用。审查了分子水平的设计原理,通过该原理工程化了增强的机械活性,并重点研究了为宝石-二卤代环丙烷机械家族确定的定量结构-活性研究。

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