## Abstract We synthesized a series of polystyrene derivatives containing coumarin side groups using polymer analogous reactions. The liquidβcrystal (LC) alignment director for these polymer films was found to be perpendicular to the rubbing direction. The contrast ratio and anchoringβenergy values
Perpendicular and parallel alignment behaviors of liquid crystals at rubbed films of brush polyimides
β Scribed by Taek Joon Lee; Suk Gyu Hahm; Seung Woo Lee; Boknam Chae; Seong June Lee; Gahee Kim; Seung Bin Kim; Jin Chul Jung; Moonhor Ree
- Book ID
- 103843534
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 351 KB
- Volume
- 132
- Category
- Article
- ISSN
- 0921-5107
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β¦ Synopsis
Two series of brush polyimides (PIs) with various lengths of the bristles were studied as thin films using atomic force microscopy, optical retardation and linearly polarized infrared spectroscopy before and after rubbing, and their nematic liquid crystal (LC) aligning abilities were investigated: poly(p-phenylene 3,6-bis(4-(n-alkyloxy)phenyloxy)pyromellitimide)s (Cn-PMDA-PDA PIs: n = 4, 6, 7 and 8) and poly(4,4 -methylenyldiphenylene 3,6-bis(4-(n-alkyloxy)phenyloxy)pyromellitimide)s (Cm-PMDA-MDA PIs: m = 1, 4, 8 and 12). For all the PI films, the rubbing process was found to create microgrooves in the films along the rubbing direction, and to orient the polymer main chains and the n-alkyl bristle end groups along the rubbing direction, but to orient the phenyloxy bristle units perpendicular to the rubbing direction. The LC molecules on the rubbed film surfaces of Cn-PMDA-PDA PIs with n = 4, 6 and 7 were found to be aligned perpendicular to the rubbing direction. In contrast, rubbed films of Cn-PMDA-PDA PIs (n = 8) and Cm-PMDA-MDA PIs (m = 1, 4, 8 and 12) induced LC alignment parallel to the rubbing direction. These results collectively lead a conclusion that LC alignment on the rubbed PI film is determined by a play-off between the directionally anisotropic interactions the LC molecules with all possible factors associated at the film surface.
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