Effect of flexible spacer length on the mesophase structures of main-chain/side-chain liquid crystalline polymers based on ethyl cellulose

被引:0
|
作者
Tianhui Hu
Jie Yi
Jianbo Xiao
Hailiang Zhang
机构
[1] Key Laboratory of Polymeric Materials & Application Technology of Hunan Province,
[2] Key Laboratory of Advanced Functional Polymer Materials of Colleges and Universities of Hunan Province,undefined
[3] College of Chemistry,undefined
[4] Xiangtan University,undefined
来源
Polymer Journal | 2010年 / 42卷
关键词
DCC coupling; liquid crystalline cellulose derivative; MCSCLCP; mesophase structure; spacer length;
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中图分类号
学科分类号
摘要
Main-chain/side-chain liquid crystalline polymers (MCSCLCPs) based on ethyl cellulose (AzomEC, m=2, 4, 6, where m is the length of the spacer between the main chain and mesogens) were successfully synthesized by N,N′-dicylcohexylcarbodiimide (DCC) coupling. Molecular characterizations of the resultant polymers with different spacer lengths were performed by proton nuclear magnetic resonance, Fourier transform-infrared spectroscopy and gel permeation chromatography. The phase transitions and liquid crystalline (LC) behaviors of these polymers were investigated by differential scanning calorimetry, polarized optical microscopy and wide-angle X-ray diffraction. The results indicate that spacer length has a tremendous effect on the LC behavior of the polymer. The glass transition temperatures, phase transition temperatures and the corresponding enthalpy of transitions decreased as the flexible spacer length increased. The mesophase structures of polymers consisted of a large-scale ordered lamellar structure composed of the EC main chain and a relatively small-scale ordered structure formed by azobenzene side chains. All the polymers form a similar lamellar structure on a large scale; however, the small-scale ordered structure becomes relatively disordered, that is, from crystal (m=2) to smectic B (m=4) to smectic A (m=6) at low temperatures.
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页码:752 / 758
页数:6
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