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Self-Assembling Behavior of Smart Nanocomposite System: Ferroelectric Liquid Crystal Confined by Stretched Porous Polyethylene Film

机译:智能纳米复合体系的自组装行为:拉伸多孔聚乙烯薄膜内限掺入的铁电液晶

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摘要

The control and prediction of soft systems exhibiting self-organization behavior can be realized by different means but still remains a highlighted task. Novel advanced nanocomposite system has been designed by filling of a stretched porous polyethylene (PE) film with pore dimensions of hundreds of nanometers by chiral ferroelectric liquid crystalline (LC) compound possessing polar self-assembling behavior. Lactic acid derivative exhibiting the paraelectric orthogonal smectic A* and the ferroelectric tilted smectic C* phases over a broad temperature range is used as a self-assembling compound. The morphology of nanocomposite film has been checked by Atomic Force Microscopy (AFM). The designed nanocomposite has been studied by polarizing optical microscopy (POM), differential scanning calorimetry (DSC), small and wide-angle X-ray scattering and broadband dielectric spectroscopy. The effect of a porous PE confinement on self-assembling, structural, and dielectric behavior of the chiral LC compound has been established and discussed. While the mesomorphic and structural properties of the nanocomposite are found not to be much influenced in comparison to that of a pure LC compound, the polar properties have been toughly suppressed by the specific confinement. Nevertheless, the electro-optic switching was clearly observed under applied electric field of low frequency (210 V, 19 Hz). The dielectric spectroscopy and X-ray results reveal that the helical structure of the ferroelectric liquid crystal inside the PE matrix is completely unwound, and the molecules are aligned along stretching direction. Obtained results demonstrate possibilities of using stretched porous polyolefins as promising matrices for the design of new nanocomposites.
机译:表现出自组织行为的软系统的控制和预测可以通过不同的方式实现,但仍然是突出的任务。通过通过手性铁电液晶(LC)化合物填充具有数百纳米的孔径的拉伸多孔聚乙烯(PE)膜,设计了一种新的先进的纳米复合体系。通过具有极性自组装行为的手性铁电液晶(LC)化合物。在宽温度范围内表现出碱电正交静脉A *和铁电倾斜的近晶C *相的乳酸衍生物用作自组装化合物。用原子力显微镜(AFM)检查了纳米复合膜的形态。已经通过偏振光学显微镜(POM),差示扫描量热法(DSC),小型和广角X射线散射和宽带介电光谱来研究设计的纳米复合材料。已经建立并讨论了多孔PE禁闭对手性LC化合物的自组装,结构和介电行为的影响。虽然与纯LC化合物的相比,发现纳米复合材料的偏心和结构性能不受很大的影响,但是通过特定的限制,极性性能非常抑制。然而,在低频的应用电场(210V,19 Hz)下清楚地观察到电光切换。介电光谱和X射线结果表明,PE基质内的铁电液晶的螺旋结构完全展开,分子沿拉伸方向对齐。获得的结果证明了使用拉伸多孔聚烯烃作为新纳米复合材料设计的有前途的基质的可能性。

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