应用化学 ›› 2009, Vol. 26 ›› Issue (10): 1129-1133.

• 研究论文 •    下一篇

双路易斯酸催化原位增容乙烯辛烯共聚物/苯乙烯共混物的研究

刘焱龙,柯卓,尹立刚,石强,殷敬华   

  1. (高分子物理与化学国家重点实验室,中国科学院长春应用化学研究所 长春 130022)
  • 收稿日期:2008-09-27 修回日期:2008-12-08 出版日期:2009-10-10 发布日期:2009-10-10
  • 通讯作者: 殷敬华,男,研究员,博士生导师; E-mail:yinjh@ciac.jl.cn; 研究方向:高分子材料改性
  • 基金资助:
    国家自然科学基金重点(50833005)和国家自然科学基金青年基金(50803061)资助项目

Combined Lewis acids catalysed in-situ compatibilization of poly(octene-ethylene) and polystyrene blends

 LIU Yan-Long, KE Zhuo, YIN Li-Gang, SHI Jiang, YIN Jing-Hua   

  1. (State Key Laboratory of Polymer Physics and Chemistry,Changchun Insitute of Applied Chemistry,Chinese Academy of Sciences,Changchun 130022)
  • Received:2008-09-27 Revised:2008-12-08 Published:2009-10-10 Online:2009-10-10

摘要:

采用新型双路易斯酸, 三甲基氯硅烷和三氯化铟,为催化剂引发傅氏烷基化反应,实现了乙烯辛烯共聚物(POE)和聚苯乙烯(PS)共混物的原位增容。红外光谱验证了接枝物的存在。用扫描电镜观察了反应共混体系和简单物理共混物的形态, 前者分散相的尺寸小于1 μm, 后者分散相的尺寸则较大, 一般为3~4 μm。原位生成的接枝物起到相容剂的作用,增容后的样品的力学性能得到较明显的提升。如:当POE /PS 为40/60 (wt%) 时, 与相同组成的物理共混的POE/PS 相比, 其悬臂梁冲击强度由1.9 kJ/m2 增加到9.7 kJ/m2, 断裂伸长率由3.4%提高到46.3%。增容后共混物的流变性能与物理共混物相比也发生了显著的变化。

关键词: 反应共混, 增容, 接枝物, 乙烯辛烯共聚物, 聚苯乙烯

Abstract:

In this work, a new type combined Lewis acids that can catalyze Friedel-Crafts alkylation reaction between POE and PS in the molten state was studied. The existence of graft copolymer was testified by FTIR, showing the catalytic effect of this new type catalyst. SEM micrographs showed that the size of domains was decreased from 4~ 5 ?m to less than 1 ?m depending upon them as fraction of catalyst added. Due to the fact that in-situ generated POE-g -PS copolymer could act as a compatibilizer in the relative blending system, the mechanical properties of reactive blends were improved notably compared to those of physical blends. For examples, after coompatibilization the Izod impact strength of a POE/PS blend (60/40 wt%) was increased form 1.92kJ/m2 to 9.71 kJ/m2 and its elongation at break increased from 3.4% to 46.3%. The increased compatibilization was also supported by the method of rheology, with which higher complex viscosity of compatibilized blends was observed compared to those of physical blends.

Key words: reactive blend, compatibilization, graft copolymer, polyethylene octane copolymer, polystyrene