首页> 外文期刊>The European physical journal, E. Soft matter >Physical properties of aqueous suspensions of goethite (α-FeOOH) nanorods Part II: In the nematic phase
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Physical properties of aqueous suspensions of goethite (α-FeOOH) nanorods Part II: In the nematic phase

机译:针铁矿(α-FeO​​OH)纳米棒水悬浮液的物理性质第二部分:向列相

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At volume fractions larger than 8.5%, aqueous suspensions of lath-like goethite (α-FeOOH) nanorods form a lyotropic nematic phase. In this article, we first discuss the nematic ordering within statistical-physics models of the isotropicematic phase transition. We then describe the influence of a magnetic field on the nematic phase. Because the nanorods bear permanent magnetic moments, the nematic suspensions have dipolar order and very low Frederiks thresholds. Moreover, the nematic phase aligns parallel to a small magnetic field but realigns perpendicular to a high field because of a competition between the permanent moments of the nanorods and their negative anisotropy of magnetic susceptibility. This magneto-optical study of the nematic phase is completely consistent with that of the isotropic phase of the same suspensions published in Part I (this issue, p. 291). Besides, we demonstrate the field-induced biaxiality of a nematic single domain aligned perpendicular to the field. We also describe here preliminary experiments where an a.c. electric field is applied to the nematic phase. Both field amplitude and frequency were found to control the alignment direction and homeotropic-to-planar alignment transitions were observed. From this data, simple models were used to estimate some physical constants of the nematic phase.
机译:板条状针铁矿(α-FeO​​OH)纳米棒的水悬浮液的体积分数大于8.5%,形成溶致向列相。在本文中,我们首先讨论各向同性/向列相变的统计物理学模型内的向列排序。然后我们描述磁场对向列相的影响。由于纳米棒具有永久磁矩,因此向列悬浮液具有偶极顺序,并且Fredredek阈值非常低。此外,由于纳米棒的永久矩与其磁化率的负各向异性之间的竞争,向列相平行于小磁场排列,但垂直于高磁场重新排列。该向列相的磁光研究与第一部分中公开的相同悬浮液的各向同性相完全一致(本期,第291页)。此外,我们证明了垂直于该场排列的向列单畴的场诱导双轴性。我们还在此处介绍了一些初步实验,其中交流电场作用于向列相。发现场振幅和频率都可以控制取向方向,并且观察到垂直向平面的取向转变。根据这些数据,使用简单的模型估算向列相的一些物理常数。

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