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Application of small-angle neutron scattering to the study of forces between magnetically chained monodisperse ferrofluid emulsion droplets

机译:小角中子散射在磁链单分散铁磁乳液液滴间力研究中的应用

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摘要

The optical magnetic chaining technique (MCT) developed by Leal-Calderon, Stora, Mondain-Monval, Poulin & Bibette [Phys. Rev. Lett. (1994), 72, 2959-2962] allows precise measurements of force profiles between droplets in monodisperse ferrofluid emulsions. However, the method lacks an in situ determination of droplet size and, therefore, requires a combination of separately acquired measurements of droplet chain periodicity versus an applied magnetic field from optical Bragg scattering and droplet diameter inferred from dynamic light scattering (DLS) to recover surface force-distance profiles between the colloidal particles. Compound refractive lens (CRL) focused small-angle neutron scattering (SANS) MCT should result in more consistent measurements of droplet size (form factor measurements in the absence of field) and droplet chaining period (from structure factor peaks when the magnetic field is applied), and, with access to shorter length scales, extend force measurements to closer approaches than possible by optical measurements. This article reports on CRL-SANS measurements of monodisperse ferrofluid emulsion droplets aligned in straight chains by an applied field perpendicular to the incident beam direction. Analysis of the scattering from the closely spaced droplets required algorithms that carefully treated resolution and its effect on mean scattering vector magnitudes in order to determine droplet size and chain periods to sufficient accuracy. At lower applied fields, scattering patterns indicate structural correlations transverse to the magnetic field direction owing to the formation of intermediate structures in early chain growth.
机译:Leal-Calderon,Stora,Mondain-Monval,Poulin和Bibette开发的光磁链技术(MCT)[Phys。莱特牧师(1994),72,2959-2962]允许精确测量单分散铁磁流体乳液中的液滴之间的力分布。但是,该方法缺乏就地确定液滴大小的方法,因此,需要结合分别获取的液滴链周期性测量值与光学布拉格散射的施加磁场以及从动态光散射(DLS)推断出的液滴直径的组合,以恢复表面胶体颗粒之间的力-距离分布。复合折射透镜(CRL)聚焦的小角度中子散射(SANS)MCT可以使液滴尺寸(无场时的形状因数测量)和液滴链接周期(从施加磁场时的结构因数峰值)的测量结果更加一致),并且可以使用更短的长度刻度,将力的测量范围扩展到比光学测量可能的范围更近的方法。本文报道了通过垂直于入射光束方向的施加场以直链排列的单分散铁磁流体乳液液滴的CRL-SANS测量。分析近距离液滴产生的散射需要仔细处理分辨率及其对平均散射矢量幅度的影响的算法,以便以足够的精度确定液滴大小和链周期。在较低的外加磁场下,由于早期链增长中形成了中间结构,因此散射图样表明与磁场方向垂直的结构相关性。

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