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Polysiloxane-Based Side Chain Liquid Crystal Polymers: From Synthesis to Structure–Phase Transition Behavior Relationships

机译:聚硅氧烷基侧链液晶聚合物:从合成到结构-相变行为的关系

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摘要

Organosilicon polymer materials play an important role in certain applications due to characteristics of much lower glass transition temperatures (Tg), viscosities, surface energy, as well as good mechanical, thermal stabilities, and insulation performance stemming from the higher bond energy and the larger bond angles of the adjacent silicon-oxygen bond. This critical review highlights developments in the synthesis, structure, and phase transition behaviors of polysiloxane-based side chain liquid crystal polymers (PSCLCPs) of linear and cyclic polysiloxanes containing homopolymers and copolymers. Detailed synthetic strategies are elaborated, and the relationship between molecular structures and liquid crystalline phase transition behaviors is systematically discussed, providing theoretical guidance on the molecular design of the materials.
机译:有机硅聚合物材料由于具有较低的玻璃化转变温度(Tg),粘度,表面能以及良好的机械,热稳定性和较高的键合能和较大的键合所带来的绝缘性能,因此在某些应用中起着重要作用。相邻的硅-氧键的角度。这篇重要的评论重点介绍了含有均聚物和共聚物的线性和环状聚硅氧烷的基于聚硅氧烷的侧链液晶聚合物(PSCLCP)的合成,结构和相变行为的发展。详细阐述了详细的合成策略,系统地讨论了分子结构与液晶相变行为之间的关系,为材料的分子设计提供了理论指导。

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