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A new soft-matter material with old chemistry: Passerini multicomponent polymerization-induced assembly of AIE-active double-helical polymers with rapid visible-light degradability

机译:具有旧化学的新型柔软物质材料:Passerini多组分聚合诱导的AIE-活性双螺旋聚合组件,具有快速可见光可降解性

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Mimicking the superstructures and functions of natural chiral materials is beneficial to understand specific biological activities in living organisms and broaden applications in the fields of chemistry and materials sciences. However, it is still a great challenge to construct water-soluble, double-helical polymers with multiple responsiveness. Herein, we report for the first time a straightforward, general strategy to address this issue by taking advantage of Passerini multicomponent polymerization-induced assembly (PMPIA). The polymerization-induced generation of supramolecular interactions in chiral α-acyloxy amides drives the assembly of polymers and improves their stability in various solvents. This double-helical polymer is sensitive to metal ions, temperature, pH, and solvents, making both the superstructure and the AIE effect reversibly adjustable. Meanwhile, the hydrogen-bonding-assisted cyclization of photolabile α-acyloxy amides accelerates the degradation of helical polymers under visible-light irradiation. It is anticipated that this novel PMPIA strategy opens new horizons to inspire the design of advanced chiral/helical polymers with multiple functions.
机译:模仿天然手性材料的上层建筑和功能有利于了解生物体中的特定生物活性,并在化学和材料科学领域扩大应用。然而,构建具有多重反应性的水溶性的双螺旋聚合物仍然是一个巨大的挑战。在此,我们首次报告了通过利用Passerini多组分聚合诱导的组装(PMPIA)来解决这一问题的简单策略。细聚合诱导的手性α-酰氧基酰胺的超分子相互作用的产生驱动聚合物的组装并改善其各种溶剂的稳定性。这种双螺旋聚合物对金属离子,温度,pH和溶剂敏感,使得上部结构和AIE效应可逆地调节。同时,光型α-酰氧基酰胺的氢键辅助环化加速了可见光照射下螺旋聚合物的降解。预计这一新的PMPIA策略将打开新的视野,以激发具有多种功能的先进手性/螺旋聚合物的设计。

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