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Physicomechanical studies on the langmuir‐blodgett films of polythiophene containing mesogenic side chains
Authors:N Somanathan  C K Pandiyarajan  W A Goedel  W C Chen
Institution:1. Polymer Laboratory, Central Leather Research Institute, Chennai, Tamilnadu 600020, India;2. Department of Physical Chemistry, Chemnitz University of Technology, 09111 Chemnitz, Germany;3. Institute of Polymer Science and Engineering, National Taiwan University, Taipei 106, Taiwan
Abstract:Liquid crystalline materials display unique properties, which can be exploited in various optoelectronic device applications. The Langmuir‐Blodgett (LB) film characteristics of polythiophene model compounds containing phenyl rings linked with azomethine, ester, and alkoxy functional groups poly‐4‐{(E)‐thiophen‐3‐ylmethylidene]amino}phenyl 4‐alkyloxybenzoate (PTAPAB series) and poly‐4‐alkyloxy phenyl 4‐{(E)‐thiophen‐3‐ylmethylidene]amino}benzoate (PAPTAB Series) were explored in this study. The AM1 optimized geometries of the aforementioned compounds showed that the films have different type of orientation in space because of the change in the linking functional group. The LB film characteristics were studied by applying the concepts of the failure mechanism in tensile failure. The compression‐expansion hysteresis cycle of the LB films at predetermined area per repeat unit was used to study the viscous, elastic, and plastic nature of the films. The results showed that in PAPTAB series compounds, the LB films were more flexible and took less surface energy than its PTAPAB series homologues, which formed into LB films of rigid nature. The LB films of PAPTAB series compounds were of more viscoplastic in nature. The studies suggested that PAPTAB series structures exhibited good thin film forming nature than its PTAPAB series homologues. © 2008 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 47: 173–182, 2009
Keywords:conjugated polymers  Langmuir‐Blodgett (LB) films  liquid crystalline  liquid crystalline polymers (LCP)  mechanical properties  polythiophenes  structure‐property relations  viscoelasticity
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