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Molecular structure of bottlebrush polymers in melts

机译:熔体中瓶刷聚合物的分子结构

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Bottlebrushes are fascinating macromolecules that display an intriguing combination of molecular and particulate features having vital implications in both living and synthetic systems, such as cartilage and ultrasoft elastomers. However, the progress in practical applications is impeded by the lack of knowledge about the hierarchic organization of both individual bottlebrushes and their assemblies. We delineate fundamental correlations between molecular architecture, mesoscopic conformation, and macroscopic properties of polymer melts. Numerical simulations corroborate theoretical predictions for the effect of grafting density and side-chain length on the dimensions and rigidity of bottlebrushes, which effectively behave as a melt of flexible filaments. These findings provide quantitative guidelines for the design of novel materials that allow architectural tuning of their properties in a broad range without changing chemical composition.
机译:洗瓶刷是令人着迷的大分子,其分子和颗粒特征的有趣组合对生命和合成系统(例如软骨和超软弹性体)都具有至关重要的意义。但是,由于缺乏有关单个牙刷及其组件的层次组织的知识,阻碍了实际应用的进展。我们描述了分子结构,介观构象和聚合物熔体的宏观性质之间的基本关系。数值模拟证实了接枝密度和侧链长度对牙刷的尺寸和刚度的影响的理论预测,该牙刷有效地表现为柔性细丝的熔体。这些发现为新型材料的设计提供了定量指导,从而可以在不改变化学成分的情况下在广泛范围内对其结构进行结构调整。

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