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Theory of binary mixtures of a rodlike polymer and a liquid crystal

机译:棒状聚合物和液晶的二元混合物理论

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We present a mean field theory to describe phase separations in mixtures of a low molecular-weight-liquid crystalline (LC) molecule and a rigid-rodlike polymer (rod) such as carbon nanotubes (CNTs) and LC polymers. By taking into account two orientational order parameters of the rod and the LC, we find three nematic phases (N_0, N_1, N_2) on the temperature-concentration plane, depending on the attractive or repulsive interactions between the rod and the LC. We discuss the phase behavior of the systems where the rod and the LC are oriented to be parallel or perpendicular with each other and find that the phase diagrams of the parallel alignment are different from that of the perpendicular one. We predict the appearances of a lower critical solution temperature (LCST) and an upper one, a tricritical point, a critical point, and the first- and the second-order nematic-isotropic phase transitions. The theory can qualitatively describe the phase diagram with a LCST observed in a rod/LC mixture. We also predict a variety of phase separations in CNT/LC mixtures.
机译:我们提出了一种平均场理论来描述低分子量液晶(LC)分子和诸如碳纳米管(CNT)和LC聚合物的刚性棒状聚合物(棒)的混合物中的相分离。通过考虑杆和LC的两个取向顺序参数,我们根据杆和LC之间的吸引或排斥相互作用,在温度集中平面上找到三个向列相(N_0,N_1,N_2)。我们讨论了杆和LC定向为彼此平行或垂直的系统的相位行为,发现平行对准的相位图与垂直对准的相位图不同。我们预测较低的临界固溶温度(LCST)和较高的临界固溶温度(LCST)的出现,三临界点,临界点以及一阶和二阶向列各向同性的相变。该理论可以定性地描述在棒/ LC混合物中观察到的LCST相图。我们还预测了CNT / LC混合物中的各种相分离。

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