Abstract
We report a novel observation of the tetragonal perforated layer structures in a series of rod-coil liquid crystalline block copolymers (BCPs), poly(styrene-block-(2,5-bis[4-methoxyphenyl]oxycarbonyl)-styrene) (PS-b-PMPCS). PMPCS forms rigid rods while PS forms the coil block. Differential scanning calorimetry (DSC), polarized light microscopy (PLM), small-angle X-ray scattering (SAXS), wide-angle X-ray diffraction (WAXD), and transmission electron microscopy (TEM) techniques were used to investigate these rod-coil molecules, and a perforated layer structure was observed at fPMPCS ≈ 0.37 in relatively low molecular weight (Mw) samples and ∼0.5 in high Mw PS-b-PMPCS. This substantial phase boundary shift was attributed to the rod-coil nature of the BCP. The perforation obeys a tetragonal instead of hexagonal symmetry. The "onset" of perforation was also observed in real space in sample PS272-b-PMPCS93 (fPMPCS ≈ 0.52), in which few PS chains punctuate PMPCS layers. A slight increase in fPS, by blending with PS homopolymer, led to a dramatic change in the BCP morphology, and uniform tetragonal perforations were observed at fPMPCS ≈ 0.48. © 2005 American Chemical Society.
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CITATION STYLE
Tenneti, K. K., Chen, X., Li, C. Y., Tu, Y., Wan, X., Zhou, Q. F., … Hsiao, B. S. (2005). Perforated layer structures in liquid crystalline rod-coil block copolymers. Journal of the American Chemical Society, 127(44), 15481–15490. https://doi.org/10.1021/ja053548k
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