Liquid crystalline assembly of a diblock rod-coil polymer based on poly(ethylene oxide) and its complexes with LiCF3SO3

被引:61
作者
Lee, M [1 ]
Oh, NK [1 ]
Lee, HK [1 ]
Zin, WC [1 ]
机构
[1] POHANG UNIV SCI & TECHNOL,DEPT MAT SCI & ENGN,POHANG 790784,SOUTH KOREA
关键词
D O I
10.1021/ma951418y
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The rod-coil polymer of ethyl 4-[4'-oxy-4-biphenylylcarbonyloxy]-4'-biphenylcarboxylate with poly(ethylene oxide) with a degree of polymerization of 12 (12-4) was observed to exhibit a microphase-separated lamellar structure with nanoscale dimension and to melt into a layered smectic A mesophase. The complexes of 12-4 with 0.05-0.8 mol of LiCF3SO3 per ethylene oxide unit of a molecule were also prepared in order to investigate mesomorphic phase changes of 12-4 upon complexation. An abrupt mesophase change was observed for the entire range of salt concentrations. The complexes with 0.05-0.2 mol of LiCF3SO3 display an enantiotropic smectic A phase as their highest temperature mesophase. From the complex with 0.2 mol of LiCF3SO3, an enantiotropic cubic phase is induced and a smectic A phase disappears at the complex with 0.25 mol of LiCF3SO3, which displays a cubic mesophase only. The complex with 0.3 mol of LiCF3SO3 also exhibits an enantiotropic cubic phase; however, it exhibits a cylindrical micellar mesophase as its highest temperature mesophase, contrary to the complexes with up to 0.25 mol of LiCF3SO3. The complexes with 0.4-0.7 mol of LiCF3SO3 exhibit only a cylindrical micellar mesophase, and the complex with higher salt concentration becomes amorphous. These results, characterized by a combination of differential scanning calorimetry, optical polarized microscopy, and X-ray scattering experiments, are discussed.
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页码:5567 / 5573
页数:7
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