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通过自由基聚合快速定量一锅法合成序列可控聚合物。

Rapid and quantitative one-pot synthesis of sequence-controlled polymers by radical polymerization.

机构信息

1] Key Centre for Polymers and Colloids, School of Chemistry, The University of Sydney, Sydney, New South Wales 2006, Australia [2] Laboratory of Advanced Catalysis for Sustainability, School of Chemistry, The University of Sydney, New South Wales 2006, Australia.

出版信息

Nat Commun. 2013;4:2505. doi: 10.1038/ncomms3505.

Abstract

A long-standing challenge in polymer chemistry has been to prepare synthetic polymers with not only well-defined molecular weight, but also precisely controlled microstructure in terms of the distribution of monomeric units along the chain. Here we describe a simple and scalable method that enables the synthesis of sequence-controlled multiblock copolymers with precisely defined high-order structures, covering a wide range of functional groups. We develop a one-pot, multistep sequential polymerization process with yields >99%, giving access to a wide range of such multifunctional multiblock copolymers. To illustrate the enormous potential of this approach, we describe the synthesis of a dodecablock copolymer, a functional hexablock copolymer and an icosablock (20 blocks) copolymer, which represents the largest number of blocks seen to date, all of very narrow molecular weight distribution for such complex structures. We believe this approach paves the way to the design and synthesis of a new generation of synthetic polymers.

摘要

在聚合物化学中,长期以来的一个挑战是制备不仅具有明确分子量,而且在沿链的单体单元分布方面具有精确控制的微结构的合成聚合物。在这里,我们描述了一种简单且可扩展的方法,该方法能够合成具有精确定义的高阶结构的序列可控多嵌段共聚物,涵盖了广泛的功能基团。我们开发了一种一锅法、多步顺序聚合工艺,产率>99%,可获得广泛的此类多功能多嵌段共聚物。为了说明这种方法的巨大潜力,我们描述了十二嵌段共聚物、功能六嵌段共聚物和二十嵌段(20 嵌段)共聚物的合成,这代表了迄今为止所见的嵌段数量最多的共聚物,所有这些共聚物都具有非常窄的分子量分布,对于如此复杂的结构而言。我们相信这种方法为设计和合成新一代合成聚合物铺平了道路。

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