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Living alkene polymerization:New methods for the precision synthesis of polyolefins

机译:活性烯烃聚合:精密合成聚烯烃的新方法

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Precise control over product structure is the goal of all chemical synthesis.In the field of polymer synthesis,the structure of the resultant macromolecule is intimately linked to its material properties,which ultimately determines the potential applications for the polymeric material.Method development for alkene polymerization is becoming increasingly focused on achieving fine control over all aspects of macromolecular architectureespecially chain composition,molecular weight,and stereochemistry.One of the most powerful methods developed so far which is capable of furnishing a high degree of control over polymer architecture is living alkene polymerization catalyzed by transition metal complexes.Living polymerization is characterized by efficient initiation and chain termination/transfer rates that are negligible in comparison to the rate of propagation.Using living alkene polymerization methods,polymer chemists have synthesized materials with microstructures that were inaccessible just a decade ago.Specific examples include polyolefin-based block copolymers,end-functionalized polyolefins,and stereo/regioblock copolymers with well-defined block structures.This review is a comprehensive account of living alkene polymerization systems with special attention paid to systemsdeveloped in the last 5 years.The text is organized by polymer type,which will allow those seeking to construct a specific polymer architecture to quickly identify relevant methodologies.? 2006 Elsevier Ltd.All rights reserved.
机译:精确控制产品结构是所有化学合成的目标。在聚合物合成领域,所得大分子的结构与其材料性能密切相关,最终决定了聚合物的潜在应用。烯烃聚合的方法开发越来越关注对大分子结构的各个方面,特别是链组成,分子量和立体化学的精细控制。迄今为止,开发的能够对聚合物结构提供高度控制的最有效方法之一是催化活性烯烃聚合活性聚合的特征是有效的引发和链终止/转移速率,与增殖速率相比可以忽略不计。使用活性烯烃聚合方法,高分子化学家已经合成了微观结构难以达到的材料。十年前,具体例子包括基于聚烯烃的嵌段共聚物,端基官能化的聚烯烃以及具有定义明确的嵌段结构的立体/区域嵌段共聚物。本综述全面论述了活性烯烃聚合体系,并特别关注了最近5年。该文本按聚合物类型进行组织,这将使那些寻求构建特定聚合物体系结构的人能够快速确定相关方法。 2006 Elsevier Ltd.保留所有权利。

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