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Dispersion of gamma-alumina nano-sized spherical particles in a calamitic liquid Crystal. Study and optimization of the confinement effects

机译:γ-氧化铝纳米尺寸球形颗粒在棒状液晶中的分散。研究和优化限制效应

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摘要

We report an experimental study on confined systems formed by butyloxybenzylidene octylaniline liquid crystal (4O.8) + gamma-alumina nanoparticles. The effects of the confinement in the thermal and dielectric properties of the liquid crystal under different densities of nanoparticles is analyzed by means of high resolution Modulated Differential Scanning Calorimetry (MDSC) and broadband dielectric spectroscopy. First, a drastic depression of the N-I and SmA-N transition temperatures is observed with confinement, the more concentration of nanoparticles the deeper this depression is, driving the nematic range closer to the room temperature. An interesting experimental law is found for both transition temperatures. Second, the change in shape of the heat capacity peaks is quantified by means of the full width half maximum (FWHM). Third, the confinement does not noticeably affect the molecular dynamics. Finally, the combination of nanoparticles and the external applied electric field tends to favor the alignment of the molecules in metallic cells. All these results indicate that the confinement of liquid crystals by means of gamma-alumina nanoparticles could be optimum for liquid crystal-based electrooptic devices.
机译:我们报告了由丁氧基苄叉基辛基苯胺液晶(4O.8)+γ-氧化铝纳米粒子形成的密闭系统的实验研究。通过高分辨率调制差示扫描量热法(MDSC)和宽带介电谱分析了在不同密度的纳米粒子下,液晶对热和介电性能的限制作用。首先,在限制条件下观察到N-1和SmA-N转变温度急剧下降,纳米颗粒的浓度越高,下降越深,从而将向列范围推至更接近室温。对于两个转变温度都发现了有趣的实验定律。第二,通过半峰全宽(FWHM)量化热容峰的形状变化。第三,限制不会明显影响分子动力学。最后,纳米颗粒和外部施加的电场的结合倾向于促进金属细胞中分子的排列。所有这些结果表明,通过γ-氧化铝纳米颗粒的液晶限制对于基于液晶的电光器件可能是最佳的。

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