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浓乳液聚合制备PS/PAN自增容合金及其自增容机理研究
引用本文:杜中杰,张晨,励杭泉.浓乳液聚合制备PS/PAN自增容合金及其自增容机理研究[J].高等学校化学学报,2004,25(1):184-187.
作者姓名:杜中杰  张晨  励杭泉
作者单位:北京化工大学材料科学与工程学院, 新型高分子材料的制备与加工北京市重点实验室, 北京 100029
基金项目:北京市自然科学基金 (批准号 :2 0 2 2 0 16)资助
摘    要:提出了浓乳液方法扩散自增容的反应机理,利用浓乳液液滴间异种单体的相互扩散及其共聚反应在相界面上生成准嵌段共聚物,成功地制备出自增容化的聚苯乙烯(PS)/聚丙烯腈(PAN)高分子合金.对聚合产物进行了元素分析测定,验证了浓乳液扩散自增容的反应机理.同时用红外光谱、扫描电镜以及透射电镜等手段对产物的相容性进行了表征.结果表明,在实验范围内,随着浓乳液预聚转化率的提高,产物中准嵌段共聚物的含量随之增加,PS/PAN两相间的相容性也相应得到改善.浓乳液预聚转化率为9.0%时,所制备的PS/PAN高分子合金具有最佳的相容性.

关 键 词:浓乳液  相容性  丙烯腈  自增容机理  
文章编号:0251-0790(2004)01-0184-04
收稿时间:2002-09-06

Preparation of PS/PAN Self-compatibility Alloy via Concentrated Emulsion Polymerization and Self-compatibilization Mechanism
DU Zhong-Jie,ZHANG Chen,LI Hang-Quan.Preparation of PS/PAN Self-compatibility Alloy via Concentrated Emulsion Polymerization and Self-compatibilization Mechanism[J].Chemical Research In Chinese Universities,2004,25(1):184-187.
Authors:DU Zhong-Jie  ZHANG Chen  LI Hang-Quan
Institution:College of Material Science and Engineering, Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, China
Abstract:A novel self-compatibilization mechanism of concentrated emulsion polymerization was proposed. A kind of pseudo-block copolymer was generated directly on the interfaces of different droplets constituting the compatibilzers of polystyrene and polyacrylonitrile. The self-compatibility alloy was investigated by elemental analysis, Fourier transform infra-red spectrum(FTIR), scanning electron microscopy(SEM) and transmission electron microscopy(TEM). The results show that the higher the conversion of partial polymerization is, the better the compatibilization is. It can be concluded that the compatibilization was mainly influenced by the dispersion of monomers between different droplets of styrene and acrylonitrile concentrated emulsions, and the conversion of 9.0% was the benefit for the compatibilization.
Keywords:Concentrated emulsion  Compatibility  Acrylonitrile  Self-compatibilization mechanism
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