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首页> 外文期刊>Angewandte Chemie >Intramolecular Cross-Linking: Addressing Mechanochemistry with a Bioinspired Approach
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Intramolecular Cross-Linking: Addressing Mechanochemistry with a Bioinspired Approach

机译:分子内交联:用生物透露方法解决技工

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Many of the attractive properties in polymers are a consequence of their high molecular weight and therefore, scission of chains due to mechanochemistry leads to deterioration in properties and performance. Intramolecular crosslinks are systematically added to linear chains, slowing down mechanochemical degradation to the point where the chains become virtually invincible to shear in solution. Our approach mimics the immunoglobulin-like domains of Titin, whose structure directs mechanical force towards the scission of sacrificial intramolecular hydrogen bonds, absorbing mechanical energy while unfolding. The kinetics of the mechanochemical reactions supports this hypothesis, as the polymer properties are maintained while high rates of mechanochemistry are observed. Our results demonstrate that polymers with intramolecular cross-links can be used to make solutions which, even under severe shear, maintain key properties such as viscosity.
机译:聚合物中的许多有吸引性的性质是它们的高分子量的结果,因此,由于机械化学技术引起的链的裂殖导致性能和性能的劣化。 分子内交联被系统地添加到直线链中,减慢了机械化学劣化到链条在溶液中剪切的点变得虚不不染的程度。 我们的方法模仿三肽的免疫球蛋白样域,其结构指导机械力朝向牺牲分子内氢键的裂变,在展开时吸收机械能。 机械化学反应的动力学支持该假设,因为在观察到聚合物性质,而聚合物性质被观察到高速率。 我们的结果表明,具有分子内交联的聚合物可用于制备即使在严重剪切下的溶液,维持粘度的关键特性。

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