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Living supramolecular polymerization based on reversible deactivation of a monomer by using a ‘dummy’ monomer

机译:通过使用虚拟单体基于单体的可逆失活的超分子活性聚合

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摘要

Although living supramolecular polymerization (LSP) has recently been realized, the scope of the monomer structures applicable to the existing methods is still limited. For instance, a monomer that spontaneously nucleates itself cannot be processed in a manner consistent with LSP. Herein, we report a new method for such a “reactive” monomer. We use a ‘dummy’ monomer which has a similar structure to the reactive monomer but is incapable of one-dimensional supramolecular polymerization. We show that in the presence of the dummy monomer, the reactive monomer is kinetically trapped in the dormant state. In this way, spontaneous nucleation of the reactive monomer is retarded; yet, addition of seeds of a supramolecular polymer can initiate the supramolecular polymerization in a chain growth manner. As a result, we obtain the supramolecular polymer of the reactive monomer with a controlled length, which is otherwise thermodynamically inaccessible. We believe that this concept will expand the scope of LSP for the synthesis of other functional supramolecular polymers, and thus lead to a variety of applications.
机译:尽管最近已经实现了活性超分子聚合(LSP),但是适用于现有方法的单体结构的范围仍然受到限制。例如,不能以与LSP一致的方式处理自发成核的单体。本文中,我们报道了一种用于这种“反应性”单体的新方法。我们使用的“虚拟”单体具有与反应性单体相似的结构,但不能进行一维超分子聚合。我们表明,在存在虚拟单体的情况下,反应性单体在休眠状态下被动力学捕获。这样,反应性单体的自发成核被延迟;然而,添加超分子聚合物的种子可以以链增长的方式引发超分子聚合。结果,我们获得了具有受控长度的反应性单体的超分子聚合物,否则其在热力学上是不可及的。我们认为,该概念将扩大LSP的范围,以合成其他功能性超分子聚合物,从而导致各种应用。

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