Food and Drug Administration, Ministry of Health and Welfare, Taipei, Taiwan.
Center for Measurement Standards, Industrial Technology Research Institute, Hsinchu, Taiwan.
J Food Drug Anal. 2018 Apr;26(2):628-636. doi: 10.1016/j.jfda.2017.07.004. Epub 2017 Aug 18.
This study discusses the strategies on sample preparation to acquire images with sufficient quality for size characterization by scanning electron microscope (SEM) using two commercial ZnO nanoparticles of different surface properties as a demonstration. The central idea is that micrometer sized aggregates of ZnO in powdered forms need to firstly be broken down to nanosized particles through an appropriate process to generate nanoparticle dispersion before being deposited on a flat surface for SEM observation. Analytical tools such as contact angle, dynamic light scattering and zeta potential have been utilized to optimize the procedure for sample preparation and to check the quality of the results. Meanwhile, measurements of zeta potential values on flat surfaces also provide critical information and save lots of time and efforts in selection of suitable substrate for particles of different properties to be attracted and kept on the surface without further aggregation. This simple, low-cost methodology can be generally applied on size characterization of commercial ZnO nanoparticles with limited information from vendors.
本研究讨论了样品制备策略,以获取具有足够质量的图像,以便通过扫描电子显微镜(SEM)进行尺寸表征,使用两种具有不同表面性质的商业 ZnO 纳米粒子作为演示。核心思想是,粉末形式的 ZnO 微米级聚集体需要首先通过适当的过程分解为纳米级颗粒,生成纳米颗粒分散体,然后再沉积在平面上进行 SEM 观察。接触角、动态光散射和zeta 电位等分析工具已被用于优化样品制备过程,并检查结果的质量。同时,在平面上测量 zeta 电位值也提供了关键信息,并在选择不同性质的颗粒的合适基底方面节省了大量时间和精力,使颗粒能够被吸引并保持在表面上而不会进一步聚集。这种简单、低成本的方法可以广泛应用于具有有限供应商信息的商业 ZnO 纳米粒子的尺寸表征。