Sebba David S, Watson Dakota A, Nolan John P
La Jolla Bioengineering Institute, 505 Coast Boulevard South, La Jolla, CA 92037, USA.
ACS Nano. 2009 Jun 23;3(6):1477-84. doi: 10.1021/nn9003346.
Progress in the development and application of nanoengineered systems is limited by the availability of quantitative measurement techniques. For the engineering of nanoparticle (NP)-based systems, single NP characterization is essential, but existing methods are slow and low throughput. We demonstrate a flow spectroscopy technique capable of analyzing hundreds of nanoparticles per second and use this technique for the high throughput analysis of nanoparticle surface-enhanced resonant Raman scattering (SERRS) tags. By measuring Rayleigh and Raman scattering from thousands of individual tags, tag preparations can be characterized based on their brightness and uniformity. The rapid analysis of individual nanoparticles using high spectral resolution flow spectroscopy will be useful in many areas of nanoengineering.
纳米工程系统的开发和应用进展受到定量测量技术可用性的限制。对于基于纳米颗粒(NP)的系统工程而言,单个NP表征至关重要,但现有方法速度慢且通量低。我们展示了一种每秒能够分析数百个纳米颗粒的流动光谱技术,并将该技术用于纳米颗粒表面增强共振拉曼散射(SERRS)标签的高通量分析。通过测量数千个单个标签的瑞利散射和拉曼散射,可以根据标签的亮度和均匀性对标签制备进行表征。使用高光谱分辨率流动光谱对单个纳米颗粒进行快速分析将在纳米工程的许多领域中发挥作用。