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Physico-chemical characterization of engineered metal oxide nanoparticles: the critical role of microscopy

机译:工程金属氧化物纳米粒子的物理化学表征:显微镜的关键作用

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Three different methods for extracting zinc oxide (ZnO) and titanium dioxide (Ti02) nanoparticles from commercially available sunscreen were investigated to determine the most appropriate route for producing a sample suitable for measuring the primary particle size. Direct dilution of the formulation, centrifugal methods and chemical washing were trialed in combination with ultrasonic processing and surfactant addition to generate samples that are suitable for particle size analysis. Transmission electron microscopy (TEM) and dynamic light scattering (DLS) were used to monitor the extraction and re-dispersion process. Washing with hexane, methanol and water to remove the formulation, in combination with pulsed high-powered ultrasonication and the addition of a charge-stabilizing surfactant was found to be the most efficient way of producing de-agglomerated samples. DLS measurements gave average hydrodynamic particle diameters of 87 nm for ZnO and 76 nm for TiO_2, compared to equivalent spherical particle diameters of 21 ± 12 nm for ZnO (81 particles) and 19 ± 14 nm for TiO_2 (81 particles) obtained from TEM analysis.
机译:研究了来自市售防晒氧化锌(ZnO)和二氧化钛(ZnO)和二氧化钛(TiO 2)纳米颗粒的三种不同方法,以确定最合适的生产适用于测量初级粒径的样品。直接稀释配方,离心方法和化学洗涤,与超声波加工和表面活性剂组合进行试验,以产生适用于粒度分析的样品。透射电子显微镜(TEM)和动态光散射(DLS)用于监测提取和再分散过程。用己烷,甲醇和水洗涤以除去配方,与脉冲高功率超声组合,并发现添加电荷稳定表面活性剂是产生脱凝样品的最有效方式。 DLS测量对于ZnO(81颗粒)的等效球粒径为21±12nm的ZnO和76nm的平均水动力粒径为87nm,对于TiO_2(81颗粒)的等效球粒径为21±12nm,与TiO_2(81颗粒)相比。

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