The Viscosity and Self-Diffusion of Some Real Colloidal Ferrofluids

IF 2.5 Q3 CHEMISTRY, PHYSICAL Colloids and Interfaces Pub Date : 2022-10-31 DOI:10.3390/colloids6040062
Luis D. Ávalos González, M. Hernández-Contreras, K. Martínez
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Abstract

One primary concern in colloid science is understanding the relationship of its macroscopic rheology and diffusion behavior with the observed microscopic arrangements of the nanoparticles in the fluid. This manuscript addresses the study of these dynamical properties through a first-principle stochastic method. Both properties directly relate to the observed fluid structure factor, which depends on a few known material parameters. However, in the literature, this static quantity is reported up to the first prominent peak of its small momentum transfer of the scattered radiation, leading to inaccurate determination of the transport properties. Here, it is proposed to use the rescaled mean spherical approximation under the requirement of fitting the experimental data of the structure beyond the dependence of more significant wave numbers. The predicted viscosity agrees with the observed ones at a low volume fraction of particles for ferrofluids dispersed in polymer solvents. This rheological quantity is inversely related to the self-diffusion coefficient of a tracer particle.
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一些真实胶体铁磁流体的粘度和自扩散
胶体科学的一个主要问题是理解其宏观流变和扩散行为与观察到的纳米颗粒在流体中的微观排列之间的关系。本文通过第一性原理随机方法解决了这些动力学性质的研究。这两种性质都与观测到的流体结构因子直接相关,而流体结构因子取决于一些已知的材料参数。然而,在文献中,这一静态量被报道到其散射辐射的小动量传递的第一个突出峰,导致输运性质的不准确测定。本文提出在不依赖于更显著的波数的情况下,在拟合结构实验数据的要求下,使用重新标度的平均球面近似。对于分散在聚合物溶剂中的铁磁流体,预测的黏度与观察到的低体积分数颗粒黏度一致。这一流变性量与示踪粒子的自扩散系数成反比。
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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