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利用XPCS研究磁性各向异性胶体的反常动力学。

Anomalous Dynamics of Magnetic Anisotropic Colloids Studied by XPCS.

作者信息

Pal Antara, Zinn Thomas, Kamal Mohammad Arif, Narayanan Theyencheri, Schurtenberger Peter

机构信息

Division of Physical Chemistry, Department of Chemistry, Lund University, SE-221 00, Lund, Sweden.

ESRF-The European Synchrotron, 38043, Grenoble, France.

出版信息

Small. 2018 Nov;14(46):e1802233. doi: 10.1002/smll.201802233. Epub 2018 Aug 13.

Abstract

The influence of an applied magnetic field on the collective dynamics of novel anisotropic colloidal particles whose shape resembles peanuts is reported. Being made up of hematite cores and silica shells, these micrometer-sized particles align in a direction perpendicular to the applied external magnetic field, and assemble into chains along the field direction. The anisotropic dynamics of these particles is investigated using multispeckle ultrasmall-angle X-ray photon correlation spectroscopy (USA-XPCS). The results indicate that along the direction of the magnetic field, the particle dynamics strongly depends on the length scale probed. Here, the relaxation of the intermediate scattering function follows a compressed exponential behavior at large distances, while it appears diffusive at distances comparable or smaller than the particle size. Perpendicular to the applied field (and along the direction of gravity), the experimental data can be quantitatively reproduced by a combination of an advective term originating from sedimentation and a purely diffusive one that describes the thermal diffusion of the assembled chains and individual particles.

摘要

报道了外加磁场对形状类似花生的新型各向异性胶体粒子集体动力学的影响。这些微米级粒子由赤铁矿核和二氧化硅壳组成,它们在垂直于外加磁场的方向上排列,并沿磁场方向组装成链。使用多散斑超小角X射线光子相关光谱法(USA-XPCS)研究了这些粒子的各向异性动力学。结果表明,沿磁场方向,粒子动力学强烈依赖于探测的长度尺度。在此,中间散射函数的弛豫在大距离处遵循压缩指数行为,而在与粒子尺寸相当或更小的距离处则表现为扩散行为。垂直于外加磁场(并沿重力方向),实验数据可以通过源自沉降的平流项和描述组装链及单个粒子热扩散的纯扩散项相结合来定量再现。

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