The phase and orientational behaviors of a series of liquid crystalline (LC) AB-type diblock copolymers comprising thermotropic main-chain (MC) polyester and side-group (SG) polymethacrylate blocks were investigated by X-ray diffraction. The MC and SG blocks were phase separated and gave rise to the
Synthesis and thermal behavior of liquid-crystalline block copolymers containing both main-chain and side-chain mesomorphic blocks
✍ Scribed by Giancarlo Galli; Emo Chiellini; Michele Laus; Maria Chiara Bignozzi; Annino Sante Angeloni; Oriano Francescangeli
- Publisher
- John Wiley and Sons
- Year
- 1994
- Tongue
- English
- Weight
- 633 KB
- Volume
- 195
- Category
- Article
- ISSN
- 1022-1352
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✦ Synopsis
Abstract
A novel type of block copolymers comprising both side‐chain and main‐chain liquid‐crystalline (LC) blocks in the same macromolecular structure was synthesized and studied. The former block was either one of two LC polymethacrylates containing an azobenzene mesogen with different substituents (block A), and the latter was a semiflexible LC polyester block (block B). Thermal, dynamic‐mechanical, and X‐ray diffraction data indicated that the two structurally different blocks were at least partly phase‐separated within the glassy and LC states. The thermodynamic phase transition parameters of block A were not affected by copolymer composition. However, significant deviations of the thermodynamic parameters of block B were observed relative to those of the corresponding homopolymers. In particular, the normalized transition enthalpies of block B were much lower, suggesting the occurrence of a more or less diffuse interphase. An increase in the nematic‐isotropic temperature was found at variance with previous results on most of the LC block copolymers, in which only one block was an LC component.
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The phase behavior of liquid+ rystalline (LC) block copolymers containing mesomorphic blocks with mainchain (MC) units and side-group (SG) substituents was investigated. The MC block consisted of an LC semiflexible polyester and the SG block was an LC polymethacrylate. Four different samples were pr
## Abstract A series of new side‐chain cholesteric liquid‐crystalline polysiloxanes was synthesized by grafting copolymerization. The chemical structures of the obtained monomers and polymers were confirmed by Fourier transform infrared or ^1^H‐NMR spectroscopy. The mesomorphic properties were inve