Department of Civil and Environmental Engineering, Duke University, Durham, North Carolina 27708, United States.
Environ Sci Technol. 2012 Sep 18;46(18):10081-8. doi: 10.1021/es204140s. Epub 2012 Sep 4.
We introduce a novel methodology based on hyperspectral imagery with enhanced Darkfield microscopy for detection, characterization, and analysis of engineered nanoparticles in both ultrapure water and in complex waters, such as simulated-wetland ecosystem water and wastewater. Hyperspectral imagery analysis of 12 different nanoparticle sample types, scattering the obliquely incident visible and near-infrared light (VNIR: 400-1000 nm) in an enhanced Darkfield background, showed that the sample information in terms of the spatial distribution as well as spectral characteristics unique to each nanoparticle types, at a sensitivity of single nanoparticle (size ≥10 nm) can be obtained. Hyperspectral imagery and Raman spectral analyses of the silver nanoparticles (AgNPs) revealed that the apparent hydrodynamic size of the particle increased while the primary size remained unchanged in the presence of coatings, which is further confirmed by dynamic light scattering measurements. Similar in size, AgNPs with different coatings exhibited similar spectral color (or peak position) but a red-shift in the peak positions by same amount relative to Bare AgNPs was observed. In conclusion, hyperspectral imagery with enhanced Darkfield microscopy can be a promising tool for detection and characterization of engineered nanoparticles in environmental systems, facilitating studies on fate and transformation of these particles in various types of water samples.
我们介绍了一种基于高光谱图像和增强暗场显微镜的新方法,用于检测、表征和分析超纯水和复杂水体(如模拟湿地生态系统水和废水)中的工程纳米粒子。对 12 种不同纳米粒子样本类型的高光谱图像分析表明,在增强的暗场背景下,斜入射的可见光和近红外光(VNIR:400-1000nm)会发生散射,从而可以获得关于每个纳米粒子类型的空间分布和独特光谱特征的样本信息,其灵敏度可达单个纳米粒子(尺寸≥10nm)。对银纳米粒子(AgNPs)的高光谱图像和拉曼光谱分析表明,在存在涂层的情况下,粒子的表观水动力尺寸增加,而粒径保持不变,这进一步通过动态光散射测量得到证实。具有相似尺寸但涂层不同的 AgNPs 表现出相似的光谱颜色(或峰值位置),但相对于裸 AgNPs,峰值位置发生了相同量的红移。总之,增强暗场显微镜的高光谱图像可以成为环境系统中工程纳米粒子检测和表征的有前途的工具,有助于研究这些粒子在各种水样中的命运和转化。