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针铁矿(α-FeOOH)纳米棒悬浮液在磁场中的复杂相行为。

The complex phase behaviour of suspensions of goethite (alpha-FeOOH) nanorods in a magnetic field.

作者信息

Lemaire Bruno J, Davidson Patrick, Ferré Jacques, Jamet Jean-Pierre, Petermann Denis, Panine Pirre, Dozov Ivan, Stoenescu Daniel, Jovilet Jean-Pierre

机构信息

Laboratoire de Physique des Solides, UMR CNRS 8502, Bâtiment 510 Université Paris-Sud, Orsay, France.

出版信息

Faraday Discuss. 2005;128:271-83. doi: 10.1039/b403074e.

Abstract

In 1902, Majorana reported the magneto-optical properties of aqueous colloidal suspensions of mixed iron oxides. Oddly enough, the magnetic-field induced birefringence displayed a non-monotonic dependence upon field intensity. This behaviour was later interpreted as due to the existence in these sols of at least two different chemical species. During the course of our studies of mineral liquid crystals, we have revisited this problem by examining aqueous suspensions of pure goethite (alpha-FeOOH) nanorods. Although they are comprised of a single chemical species, these suspensions show the same odd behaviour reported by Majorana. Moreover, we show that, as the volume fraction increases, the suspensions have an isotropic liquid/nematic/rectangular columnar phase sequence, with first-order transitions between these phases. The non-monotonic dependence of the field-induced birefringence can be explained by the existence of a remanent magnetic moment of the nanorods and the negative anisotropy of their magnetic susceptibility. Therefore, the nanorods align parallel to a weak field but realign perpendicular to the field beyond Bc approximately 375 mT. In addition, other interesting phenomena appear upon application of a magnetic field: the disordered (i.e. isotropic in zero-field) phase becomes highly anisotropic and difficult to distinguish from the nematic phase. Both phases then acquire not only quadrupolar order but also dipolar order. The rectangular columnar phase is strongly stabilised versus the nematic one. Our experimental observations raise new theoretical questions about the phase diagram of these suspensions with respect to volume fraction and magnetic field intensity.

摘要

1902年,马约拉纳报道了混合铁氧化物水胶体悬浮液的磁光性质。奇怪的是,磁场诱导的双折射对场强呈现出非单调依赖性。这种行为后来被解释为是由于这些溶胶中至少存在两种不同的化学物种。在我们对矿物液晶的研究过程中,我们通过研究纯针铁矿(α-FeOOH)纳米棒的水悬浮液重新审视了这个问题。尽管它们由单一化学物种组成,但这些悬浮液表现出与马约拉纳报道的相同的奇怪行为。此外,我们表明,随着体积分数的增加,悬浮液具有各向同性液体/向列相/矩形柱状相序列,这些相之间存在一级转变。场诱导双折射的非单调依赖性可以通过纳米棒剩余磁矩的存在及其磁化率的负各向异性来解释。因此,纳米棒在弱场下平行排列,但在超过约375 mT的Bc场强时会重新垂直于场排列。此外,施加磁场时还会出现其他有趣的现象:无序(即在零场中各向同性)相变得高度各向异性,难以与向列相区分。然后这两个相不仅获得四极序,还获得偶极序。矩形柱状相对于向列相有很强的稳定性。我们的实验观察结果就这些悬浮液关于体积分数和磁场强度的相图提出了新的理论问题。

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