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Hyperbranched polymers:from synthesis to applications

机译:超支化聚合物:从合成到应用

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Over the past 15 years,hyperbranched polymers have received much attention due to their unique chemical and physical properties as well as their potential applications in coatings,additives,drug and gene delivery,macromolecular building blocks,nanotechnology,and supramolecular science.Hyperbranched polymers can be prepared by means of single-monomer methodology (SMM)and double-monomer methodology (DMM).In SMM,the polymerization of an AB_n or latent AB,,monomer leads to hyperbranched macromolecules.SMM consists of at least four components:(1)polycondensation of AB_n monomers;(2)self-condensing vinyl polymerization;(3)self-condensing ring-opening polymerization;(4)proton-transfer polymerization.In DMM,direct polymerization of two suitable monomers or a monomer pair gives rise to hyperbranched polymers.A classical example of DMM,the polymerization of A_2 and B_n (n>2)monomers,is well known.Recently,a novel DMM based on the in situ formation of AB_n intermediates from specific monomer pairs has been developed.This form of DMM is designated as 'couple-monomer methodology'(CMM)to clearly represent the method of polymerization.Many commercially available chemicals can be used as the monomers in these systems,which should extend the availability and accessibility of hyperbranched polymers with various new end groups,architectures and properties.Because a number of comprehensive reviews have been published on SMM,research involving DMM is emphasized here.In addition,recent developments in the modification,functionalization and application of hyperbranched polymers are described.? 2004 Elsevier Ltd.All rights reserved.
机译:在过去的15年中,超支化聚合物因其独特的化学和物理特性以及在涂料,添加剂,药物和基因传递,大分子构件,纳米技术和超分子科学中的潜在应用而备受关注。通过单单体方法(SMM)和双单体方法(DMM)制备。在SMM中,AB_n或潜在AB的聚合会导致超支化大分子.SMM至少包含四个成分:(1) AB_n单体的缩聚;(2)自缩合的乙烯基聚合;(3)自缩合的开环聚合;(4)质子转移聚合。在DMM中,两种合适的单体或单体对的直接聚合会产生超支化DMM的经典实例,即A_2和B_n(n> 2)单体的聚合反应是众所周知的。最近,一种基于特定单体对AB_n中间体原位形成的新型DMM这种形式的DMM被称为``偶合单体法''(CMM),以清楚地表示聚合方法。许多可商购的化学品都可以用作这些系统中的单体,这应扩大可用性和可及性由于具有许多新的端基,结构和性质的超支化聚合物。由于在SMM上发表了许多综述,因此本文着重介绍了涉及DMM的研究。此外,还介绍了超支化聚合物的改性,功能化和应用方面的最新进展。 ? 2004 Elsevier Ltd.保留所有权利。

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