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首页> 外文期刊>Physical review, E >Influence of a dispersion of magnetic and nonmagnetic nanoparticles on the magnetic Fredericksz transition of the liquid crystal 5CB
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Influence of a dispersion of magnetic and nonmagnetic nanoparticles on the magnetic Fredericksz transition of the liquid crystal 5CB

机译:磁性和非磁性纳米颗粒的分散对液晶5cb磁性弗雷德里克斯转变的影响

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摘要

A long time ago, Brochard and de Gennes predicted the possibility of significantly decreasing the critical magnetic field of the Fredericksz transition (the magnetic Fredericksz threshold) in a mixture of nematic liquid crystals and ferromagnetic particles, the so-called ferronematics. This phenomenon is rarely measured to be large, due to soft homeotropic anchoring induced at the nanoparticle surface. Here we present an optical study of the magnetic Fredericksz transition combined with a light scattering study of the classical nematic liquid crystal: the pentylcyanobiphenyl (5CB), doped with 6 nm diameter magnetic and nonmagnetic nanoparticles. Surprisingly, for both nanoparticles, we observe at room temperature a net decrease of the threshold field of the Fredericksz transition at low nanoparticle concentrations, which appears associated with a coating of the nanoparticles by a brush of polydimethylsiloxane copolymer chains inducing planar anchoring of the director on the nanoparticle surface. Moreover, the magnetic Fredericksz threshold exhibits nonmonotonic behavior as a function of the nanoparticle concentration for both types of nanoparticles, first decreasing down to a value from 23% to 31% below that of pure 5CB, then increasing with a further increase of nanoparticle concentration. This is interpreted as an aggregation starting at around 0.02 weight fraction that consumes more isolated nanoparticles than those introduced when the concentration is increased above c = 0.05 weight fraction (volume fraction 3.5 × 10~(-2)). This shows the larger effect of isolated nanoparticles on the threshold with respect to aggregates. From dynamic light scattering measurements we deduced that, if the decrease of the magnetic threshold when the nanoparticle concentration increases is similar for both kinds of nanoparticles, the origin of this decrease is different for magnetic and nonmagnetic nanoparticles. For nonmagnetic nanoparticles, the behavior may be associated with a
机译:很久以前,常委会和deGennes预测了在向列液晶和铁磁性颗粒的混合物中显着降低了弗雷德里克斯茨转变(磁性弗雷德里克斯阈值)的临界磁场,所谓的铁磁性颗粒。由于在纳米颗粒表面诱导的柔软疗程锚固,这种现象很大测量到大。在这里,我们介绍了磁性弗雷德里克斯的光学研究与经典列液晶的光散射研究相结合:偏心氰基己烯基(5cb),掺杂6nm直径的磁性和非磁性纳米颗粒。令人惊讶的是,对于纳米颗粒,我们在室温下观察到在低纳米颗粒浓度下Fredericksz过渡的阈值场的净减少,其与纳米颗粒的涂层通过绘制导向器的平面锚定的填充纳米颗粒的涂层相关联纳米粒子表面。此外,磁性弗雷德里克斯斯阈值表现出非单调的行为作为两种类型纳米颗粒的纳米颗粒浓度的函数,首先将下降到低于纯5cb的23%至31%的值,然后随着纳米颗粒浓度的进一步增加而增加。这被解释为从约0.02重量级分的聚集,该聚集在约0.02重量级分中,消耗更多分离的纳米粒子,而不是当浓度增加到高于C = 0.05重量级分(体积分数3.5×10〜(-2))时。这表明分离的纳米颗粒在相对于聚集体上的阈值上的较大效果。根据动态光散射测量,我们推导出来,如果纳米颗粒浓度增加的磁性阈值的降低类似于两种纳米颗粒,则该减少的来源对于磁性和非磁性纳米颗粒是不同的。对于非磁性纳米颗粒,行为可能与a相关联

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  • 来源
    《Physical review, E》 |2017年第2期|共9页
  • 作者单位

    Université de Tunis El Manar Faculté des Sciences de Tunis LR99ES16 Laboratoire de Physique de la Matiere Molle et de la Modélisation Electromagnétique (LP3ME) 2092 Tunis Tunisie;

    Université de Tunis El Manar Faculté des Sciences de Tunis LR99ES16 Laboratoire de Physique de la Matiere Molle et de la Modélisation Electromagnétique (LP3ME) 2092 Tunis Tunisie;

    Université de Tunis El Manar Faculté des Sciences de Tunis LR99ES16 Laboratoire de Physique de la Matiere Molle et de la Modélisation Electromagnétique (LP3ME) 2092 Tunis Tunisie;

    Sorbonne Universités UPMC Univ Paris 06 UMR 8234 PHENIX F75005 Paris France;

    Sorbonne Universités UPMC Univ Paris 06 UMR 8234 PHENIX F75005 Paris France;

    Dept. of Physics Case Western Reserve University Cleveland Ohio 44106 USA;

    Dept. of Physics Case Western Reserve University Cleveland Ohio 44106 USA;

    Dept. of Physics Case Western Reserve University Cleveland Ohio 44106 USA;

    Univ. Bordeaux Bordeaux INP CNRS UMR5629 Laboratoire de Chimie des Polymères Organiques F33607 Pessac France;

    Sorbonne Universités UPMC Univ Paris 06 CNRS UMR 7588 Institut des Nano-Sciences de Paris (INSP) F75005 Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 统计物理学;等离子体物理学;流体力学;
  • 关键词

    Influence; nonmagnetic nanoparticles; magnetic Fredericksz transition;

    机译:影响;非磁性纳米粒子;磁性弗雷德里克斯的过渡;

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