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Versatile routes to functional RAFT chain transfer agents through the Passerini multicomponent reaction

机译:通过Passerini多组分反应实现功能性RAFT链转移剂的通用途径

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摘要

The widespread adoption of RAFT polymerization stems partly from the ease and utility of installing a functional chain transfer agent onto the ends of the generated polymer chains. In parallel, the Passerini multicomponent reaction offers great versatility in converting a wide range of easily accessible building blocks to functional materials. In this work, we have combined the two approaches such that a single, commonly available, RAFT agent is used in Passerini reactions to generate a variety of multifunctional RAFT chain transfer agents containing ester linkages. Reactions to generate the multifunctional RAFT agents took place under mild conditions and in good yields. The resulting Passerini-RAFT agents were able to exert control over radical polymerization to generate materials of well-defined molecular weights and dispersity. Furthermore, the presence in these polymer cores of ester and amide functionality through the Passerini chemistries, provided regions in the materials which are inherently biodegradable, facilitating any subsequent biomedical applications. The work overall thus demonstrates a versatile and facile synthetic route to multi functional RAFT chain transfer agents and biodegradable polymers.
机译:RAFT聚合的广泛采用部分是由于将功能性链转移剂安装在生成的聚合物链的末端上的简便性和实用性。同时,Passerini多组分反应可将多种易于使用的构建基块转化为功能材料,从而具有极大的多功能性。在这项工作中,我们结合了两种方法,以便在Passerini反应中使用一种通常可用的RAFT试剂,以生成各种包含酯键的多功能RAFT链转移剂。生成多功能RAFT试剂的反应在温和条件下以高收率进行。所得的Passerini-RAFT剂能够控制自由基聚合反应,以产生分子量和分散度明确的材料。此外,通过Passerini化学在这些聚合物核中存在酯和酰胺官能团,从而提供了材料中固有可生物降解的区域,从而有利于后续的生物医学应用。因此,总体而言,该工作证明了多功能RAFT链转移剂和可生物降解聚合物的通用且简便的合成途径。

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