多羟基环氧乙烷-四氢呋喃共聚醚的合成与表征

莫洪昌, 刘宁, 张倩, 段秉惠, 徐明辉*, 卢先明

化工新型材料 ›› 2021, Vol. 49 ›› Issue (1) : 104 -106.

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化工新型材料 ›› 2021, Vol. 49 ›› Issue (1) : 104-106. DOI: 10.19817/j.cnki.issn 1006-3536.2021.01.023
新材料与新技术

多羟基环氧乙烷-四氢呋喃共聚醚的合成与表征

    莫洪昌, 刘宁, 张倩, 段秉惠, 徐明辉*, 卢先明
作者信息 +

Synthesis and characterization of MHPET

  • Mo Hongchang, Liu Ning, Zhang Qian, Duan Binghui, Xu Minghui, Lu Xianming
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摘要

以端羟基环氧乙烷-四氢呋喃共聚醚(PET)和3-羟甲基-3-甲基氧杂环丁烷为原料,三氟化硼·乙醚络合物为催化剂,经过阳离子开环聚合反应制备出多羟基环氧乙烷-四氢呋喃共聚醚(MHPET)。并通过红外光谱、核磁共振氢谱、碳谱和差热等手段对产物的结构及性能进行表征。结果表明:PET端羟基转化为多羟基聚醚链段,MHPET的玻璃化转变温度为-61.9℃,20℃时黏度为22.09Pa·s,与N100固化之后所得聚氨酯弹性体胶片在室温下的力学性能为拉伸强度2.58MPa,断裂伸长率121%。

Abstract

The multi-hydroxyl ethylene oxide-tetrahydrofuran copolyether(MHPET)was synthesized by the cationic ring-opening polymerization of 3-hydroxylmethyl-3-methyloxetane in the presence of the hydroxyl-terminated ethylene oxide-tetrahydrofuran copolyether(PET)as macroinitiator,boron-trifuoride ethylether complex(BF3·OEt2)as the catalyst.The product was characterized by FT-IR,1H-NMR,13C-NMR and DSC.the results indicated that the hydroxyl groups of PET were transformed to multi-hydroxyl polyether,the glass transition temperature of MHPET was -61.9℃,the viscosity at 20℃ was 22.09Pa·s,The mechanical properties of polyurethane film cured by N100 were δm=2.58MPa,εb=121% at room temperature.

关键词

有机化学 / 多羟基 / 环氧乙烷-四氢呋喃共聚醚 / 3-羟甲基-3-甲基氧杂环丁烷

Key words

organic chemistry / multi-hydroxyl / ethylene oxide-tetrahydrofuran / copolyether 3-hydroxylmethyl-3-methyloxetane

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多羟基环氧乙烷-四氢呋喃共聚醚的合成与表征[J]. 化工新型材料, 2021, 49(1): 104-106 DOI:10.19817/j.cnki.issn 1006-3536.2021.01.023

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参考文献

[1] 马庆云.复合火药[M].北京:北京理工大学出版社,1997,30-32.
[2] 刘晶如,宋雪晶,杨寅.NEPE推进剂粘合剂网络结构调节研究[J].固体火箭技术,2010,33(1):72-76.
[3] 俞国星,范晓东,张翔宇,等.高能固体推进剂用粘合剂的研究进展[J].中国胶黏剂,2006,15(8):37-41.
[4] Ahmad N,Khan M B,Ma X Y,et al.The influence of cross-linking/chain extension structures on mechanical properties of HTPB-based polyurethane elastomers[J].Arabian Journal for Science and Engineering,2014,39(1):43-51.
[5] 刘晶如,罗运军,杨寅.GAP推进剂粘合剂固化体系力学性能的研究[J].精细化工,2007,24(11):1128-1131.
[6] 毛科铸,马松,罗运军.PET/N-100黏合剂体系的交联网络结构完整性分析[J].含能材料,2015,23(10):941-946.
[7] Soman R R,Athar J,Agawane N T,et al.Synthesis,characterization and rheology of tetrafunctional glycidyl azide polymer vis--vis difunctional GAP[J].Polymer Bulletin,2016,73:449-461.
[8] 向斌,杨永锋,陈皓明,等.多羟基聚丁二烯的合成研究[J].广州化工,2007,35(3):29-31.
[9] 许文萍,王香梅,王萌霞.端羟基聚丁二烯/环氧氯丙烷合成多羟基聚丁二烯的实验研究[J].高分子通报,2017(4):63-71.
[10] 朱秀忠,范晓东,张万斌,等.阳离子开环聚合中氧杂环类单体的活化及链增长机理研究进展[J].高分子通报,2014(1):7-13.

基金资助

装备预研领域基金项目(61407200103)

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