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首页> 外文期刊>Reactive & Functional Polymers >Multifunctional allyl-terminated hyperbranched poly(ethyleneimine) as component of new thiol-ene/thiol-epoxy materials
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Multifunctional allyl-terminated hyperbranched poly(ethyleneimine) as component of new thiol-ene/thiol-epoxy materials

机译:多功能烯丙基封端的超支化聚乙烯亚胺作为新型硫醇-烯/硫醇-环氧材料的组成部分

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A new allyl terminated hyperbranched poly(ethyleneimine) was synthesized and characterized and then used in different proportions as multifunctional macromonomer in tetrathiol-diglycidyl ether of bisphenol A formulations. The curing process had a two-stage character and was composed by two click reactions: a first photoinduced thiol-ene addition followed by a thermal thiol-epoxy reaction. The thiol-ene reaction was catalyzed by a radical initiator and the thiol-epoxy curing by tertiary amines. The evolution of the first part of the curing was studied by photo-DSC and FTIR and the results compared with those obtained in a photoirradiation chamber, which was used to prepare samples for thermomechanical tests. These studies showed that the thermal thiolepoxy process prematurely began during the photoirradiation because the presence of amines in the PEI structure accelerated this process. The thiol-epoxy reaction was more extensively produced when the proportion of the poly( ethyleneimine) increased in the formulation. The overlapping between both processes was greater in the photoirradiation chamber than in the photo-DSC The intermediate material was completely cured by thermal treatment in an oven. The need of adding 1-methylimidazole as catalyst to complete the thiol-epoxy reaction was derived from the calorimetric studies. The materials prepared were characterized by thermogravimetry and thermomechanical analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成并表征了一种新的烯丙基封端的超支化聚(亚乙基亚胺),然后以不同比例将其用作双酚A制剂的四硫醇-二缩水甘油醚中的多功能大分子单体。固化过程具有两阶段特征,由两个点击反应组成:第一次光诱导的硫醇-烯加成,然后进行热硫醇-环氧反应。通过自由基引发剂催化硫醇-烯反应,通过叔胺催化硫醇-环氧固化。通过光DSC和FTIR研究了固化的第一部分的演变,并将结果与​​在光辐照室中获得的结果进行了比较,光辐照室用于制备热机械测试的样品。这些研究表明,由于PEI结构中胺的存在加速了该过程,因此硫代环氧热过程在光辐照过程中过早开始。当制剂中聚(乙烯亚胺)的比例增加时,更广泛地产生硫醇-环氧反应。在光辐照室中,两个过程之间的重叠要大于在光DSC中。在烤箱中通过热处理将中间材料完全固化。从量热研究得出了需要添加1-甲基咪唑作为催化剂来完成硫醇-环氧反应的需求。所制备的材料通过热重分析和热机械分析来表征。 (C)2015 Elsevier B.V.保留所有权利。

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