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Towards Polymers with Molecular Auxeticity

机译:寻求具有分子膨胀性的聚合物

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For many decades, it has been challenging to synthesize auxetic materials at the molecular level. Auxetic materials exhibit counterintuitive behavior; they expand perpendicularly to the direction in which they are stretched. An aromatic macrocycle containing a sequence of N-substituted and N-unsubstituted amides was designed to resemble the re-entrant structure found in macromolecular auxetic materials. Upon application of tensile force, bent cis amides change to linear trans amides. This was anticipated to trigger the expansion of the macrocycle perpendicular to the direction of the applied force. To investigate the proposed configurational change by atom force microscopy (AFM), we designed and prepared a cis-trans aramide motif incorporated into an end-functionalized polymer which ensured covalent attachment to the AFM tip. At large extensions, polymer chains were envisioned to unfold and induce cis-trans isomerization.
机译:几十年来,在分子水平上合成发胀材料一直是一项挑战。辅助材料表现出违反直觉的行为;它们垂直于拉伸方向扩展。包含一系列N-取代的和N-未取代的酰胺的芳香族大环化合物被设计为类似于大分子膨胀材料中的凹角结构。在施加张力后,弯曲的顺式酰胺变为线性反式酰胺。预计这会触发大环垂直于作用力方向的膨胀。为了研究通过原子力显微镜(AFM)提出的构型变化,我们设计并制备了一个顺式-反式芳酰胺基序,该基序并入末端官能化的聚合物中,以确保与AFM尖端共价连接。在大的延伸下,可以预见聚合物链会展开并诱导顺反异构化。

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