Department of Applied Physics, Univ. Granada, Granada, 18071, Spain.
School of Physics and Astronomy, Queen Mary Univ. London, London, E14NS, UK.
Sci Rep. 2018 Jun 22;8(1):9502. doi: 10.1038/s41598-018-27840-0.
The in situ determination of the size distribution of dispersed non-spherical nanoparticles is an essential characterization tool for the investigation and use of colloidal suspensions. In this work, we test a size characterization method based on the measurement of the transient behaviour of the birefringence induced in the dispersions by pulsed electric fields. The specific shape of such relaxations depends on the distribution of the rotational diffusion coefficient of the suspended particles. We analyse the measured transient birefringence with three approaches: the stretched-exponential, Watson-Jennings, and multi-exponential methods. These are applied to six different types of rod-like and planar particles: PTFE rods, goethite needles, single- and double-walled carbon nanotubes, sodium montmorillonite particles and gibbsite platelets. The results are compared to electron microscopy and dynamic light scattering measurements. The methods here considered provide good or excellent results in all cases, proving that the analysis of the transient birefringence is a powerful tool to obtain complete size distributions of non-spherical particles in suspension.
分散非球形纳米颗粒的粒径分布的原位测定是胶体悬浮液研究和应用的重要表征工具。在这项工作中,我们测试了一种基于测量脉冲电场在分散体中诱导的双折射的瞬态行为的尺寸表征方法。这种弛豫的特定形状取决于悬浮颗粒的旋转扩散系数的分布。我们使用三种方法分析测量的瞬态双折射:扩展指数、Watson-Jennings 和多指数方法。这些方法应用于六种不同类型的棒状和片状颗粒:PTFE 棒、针铁矿、单壁和双壁碳纳米管、钠蒙脱石颗粒和水铝石薄片。结果与电子显微镜和动态光散射测量进行了比较。这里考虑的方法在所有情况下都提供了良好或优异的结果,证明了瞬态双折射的分析是获得悬浮中非球形颗粒完整粒径分布的有力工具。