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双酚A二炔丙基醚与4,4′-联苯二苄叠氮的合成及聚合反应研究    

1,3-DIPOLAR CYCLOADDITION POLYMERIZATION OF BISPROPARGYL ETHER OF BISPHENOL-A WITH 4,4′-BIPHENYL DIBENZYL AZIDE AND THEIR THERMAL ANALYSES

文献类型:期刊文献

中文题名:双酚A二炔丙基醚与4,4′-联苯二苄叠氮的合成及聚合反应研究

英文题名:1,3-DIPOLAR CYCLOADDITION POLYMERIZATION OF BISPROPARGYL ETHER OF BISPHENOL-A WITH 4,4′-BIPHENYL DIBENZYL AZIDE AND THEIR THERMAL ANALYSES

作者:扈艳红[1];罗永红[1];万里强[1];齐会民[1];黄发荣[1];杜磊[2]

机构:[1]华东理工大学材料科学与工程学院,上海200237;[2]中国航天科技集团公司第八研究院,上海200233

年份:2005

卷号:15

期号:4

起止页码:560

中文期刊名:高分子学报

外文期刊名:Acta Polymerica Sinica

收录:CSTPCD;;Scopus;北大核心:【北大核心2004】;CSCD:【CSCD2011_2012】;

基金:国家863计划资助项目(项目号2002AA35103);国家973项目(项目号5131101)

语种:中文

中文关键词:双酚A二炔丙基醚;叠氮化合物;1,3-偶极环加成反应;三唑;低温固化;聚合体系;反应研究;炔丙基;双酚A;叠氮

外文关键词:Bispropargyl ether of bisphenol-A (BPEBA), Azide, 1,3-Dipolar cycloaddition, Triazole, Lowtemperature curing

摘要:合成了两种单体双酚A二炔丙基醚与4,4′联苯二苄叠氮,研究了一种新的低温聚合体系———双酚A二炔丙基醚与4,4′联苯二苄叠氮在烘箱中的本体聚合行为.通过红外、核磁共振以及质谱、元素分析等表征了单体的结构.利用傅立叶红外技术(FTIR)跟踪了聚合反应过程中特征基团的变化,采用差示扫描量热技术(DSC)研究了聚合反应工艺及其动力学,热失重分析(TGA)考察了聚合产物的热稳定性能.通过Kissinger法和0zawa法获得了反应的一些动力学参数.结果表明,双酚A二炔丙基醚与4,4′联苯二苄叠氮易发生1,3偶极环加成聚合反应,在聚合物结构中形成三唑五元环,它们的聚合起始温度在70℃左右,聚合反应的主反应是一级反应,表观活化能ΔE=84.6kJmol,指前因子A=4.865×1010min-1.同时发现,聚合物具有较好的热稳定性能.
Abstract Two monomers, bispropargyl ether of bisphenol-A (BPEBA) and 4,4′-biphenyl dibenzyl azide (BPDBA) were synthesized and characterized with FT-IR, ^1H-NMR and elementary analysis. Their bulk polymerization was conducted in an oven, and a polytriazole was obtained by the 1,3-dipolar cycloaddition polymerization. The variation of the reactively functional groups during the polymerization was traced by FT-IR, the polymerizing reaction of BPEBA with BPDBA and its kinetics were investigated by using differential scanning calorimetry (DSC) at a variety of heating rates. Some kinetic parameters including the reaction order, activation energy and pre-exponential factor were obtained with the Kissinger and the Ozawa methods. The thermal stability of the polymer was evaluated with TGA. The results showed that BPEBA and BPDBA were easy to form polytriazole by 1,3-dipolar reaction. The polymerizing reaction happened at low temperature, i. e. 70℃, the reaction was a one order reaction, the activation energy ΔE = 84.6kJ/mol, and the pre-exponential factor A = 4.865×10^10 min^-1 .The polymer exhibited good thermal stability.

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