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Titlebook: Liquid Crystalline Polymers; Volume 1–Structure a Vijay Kumar Thakur,Michael R. Kessler Book 2016 Springer International Publishing Switzer

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,Light-Emitting Field-Effect Transistors with π-Conjugated Liquid Crystalline Polymer,-2,7-diyl)-co-bithiophene] (F8T2). Thermal annealing effects on film morphology, crystalline structure and OLEFET characteristics were investigated for spin-coated films of F8T2. The film annealed at the isotropic phase of 350 °C grew in homogeneous polycrystalline while the film grown from the nema
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Photoactive Liquid Crystalline Polymer,d. In this chapter various LC and chromophores are discussed in introduction. This is followed by general discussion on LC/chromophore blend and specifically on photoactive liquid crystalline polymer blends and composites. Specific blend behavior of photoactive polymer/LC molecules is incorporated,
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Combined Main-Chain/Side-Chain Liquid Crystalline Polymers: Synthesis and Supramolecular Ordering,le in the liquid phase, either lyotropically or thermotropically. The synthesis of liquid crystalline polymers can be achieved by integrating rigid rod-like mesogenic units into main chain and/or side chain of macromolecular chains. Herein, combined main-chain/side-chain liquid crystalline polymers
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Supramolecular (Hydrogen-Bonded and Halogen-Bonded) Liquid Crystalline Polymers,drogen bonding and halogen bonding are the most important categories of noncovalent interactions that have been investigated to this end. As an analogous counterpart of the hydrogen bonding, halogen bonding is the noncovalent interaction between halogen atoms (Lewis acids) and neutral or anionic Lew
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Introduction to Liquid Crystalline Polymers,ly for their scientific interest but also from an industrial point of view. LCPs have many attractive properties, particularly when compared with engineering polymers (EPs). LCPs are mechanically stronger than EPs, have lower thermal expansivities, and are also stable at higher temperature. Ordinary
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