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使用声学和电子显微镜在液体中监测较大颗粒存在时的纳米颗粒。

Monitoring nanoparticles in the presence of larger particles in liquids using acoustics and electron microscopy.

机构信息

Dispersion Technology Inc., Bedford Hills, NY 10507, USA.

出版信息

J Colloid Interface Sci. 2010 Feb 1;342(1):18-25. doi: 10.1016/j.jcis.2009.07.001. Epub 2009 Jul 4.

Abstract

Monitoring the presence of nanoparticles in dispersions having broad particle size distributions can be a problem for many measurement techniques because large particles or even aggregates of the smaller particles can mask the presence of the sought after nanoparticles. The ability of many existing techniques to detect the nanoparticles when present in broad polydisperse systems is largely unknown, yet it is critical for proper selection of the measuring technique for characterizing a particular nanodispersion. Acoustic spectroscopy is already a known and proven tool for studying nanoparticles in systems with a narrow size distribution. The purpose of this paper is to evaluate the sensitivity of acoustic spectroscopy for determining the nanoparticle content of very polydisperse systems. We used eight different ZnO powders from different manufacturers to prepare 5wt.% dispersions, each dispersed in water. The stability of each dispersion was optimized by pH adjustment and addition of sodium hexametaphosphate as determined by maximizing the measured zeta-potential. According to the acoustic measurement, the median size of these different ZnO dispersions varied from 200nm to 700nm. Independent TEM photographs in general confirmed the size variation between the samples. Independent DLS measurements failed to provide particle size data correlating with TEM. The acoustic measurements further showed that each dispersion contained a different relative content in the nanoparticle fraction. The precision with which the nanoparticle fraction could be determined was better than 2% of the total solid loading for all samples. In order to verify consistency of this measurement we performed a mixing study by adding dispersion with the largest nanoparticle content to the dispersion with the smallest nanoparticle content, in small increments. This test confirms that the acoustic sensitivity threshold is about 2% of nanoparticles in the broad polydisperse dispersions of dense metal oxide particles.

摘要

监测具有较宽粒径分布的分散体中纳米颗粒的存在可能对许多测量技术来说是一个问题,因为较大的颗粒甚至较小颗粒的聚集体可能会掩盖所寻求的纳米颗粒的存在。许多现有技术在存在宽多分散体系时检测纳米颗粒的能力在很大程度上是未知的,但对于正确选择用于表征特定纳米分散体的测量技术至关重要。声谱学已经是一种用于研究窄粒径分布体系中纳米颗粒的已知且经过验证的工具。本文的目的是评估声谱学确定非常多分散体系中纳米颗粒含量的灵敏度。我们使用来自不同制造商的八种不同的 ZnO 粉末来制备 5wt.%分散体,每种分散体都分散在水中。通过最大程度地提高测量的zeta 电位来优化每个分散体的稳定性,通过调整 pH 值和添加六偏磷酸钠来优化。根据声测量,这些不同 ZnO 分散体的中值粒径从 200nm 到 700nm 不等。独立的 TEM 照片通常证实了样品之间的尺寸变化。独立的 DLS 测量未能提供与 TEM 相关的粒径数据。声测量进一步表明,每个分散体中纳米颗粒部分的相对含量不同。纳米颗粒部分的确定精度对于所有样品均优于总固体负载的 2%。为了验证这种测量的一致性,我们通过以小增量将具有最大纳米颗粒含量的分散体添加到具有最小纳米颗粒含量的分散体中来进行混合研究。该测试证实,在致密金属氧化物颗粒的宽多分散分散体中,声灵敏度阈值约为 2%的纳米颗粒。

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