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首页> 外文期刊>Journal of nanoscience and nanotechnology >A General Technique to Investigate the Aggregation of Nanoparticles by Transmission Electron Microscopy
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A General Technique to Investigate the Aggregation of Nanoparticles by Transmission Electron Microscopy

机译:通过透射电子显微镜研究纳米粒子聚集的一般技术

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The aggregation state of nanoparticles (NPs) must be precisely known in order to study the structure-property relationship and to evaluate the exploitability of NPs dispersion for a given application. Here we report a general technique for sample preparation to investigate with transmission electron microscopy (TEM) the state of aggregation of NPs dispersed in liquid solution. Following a simple procedure which requires few minutes, the aggregates of NPs are "frozen" in a polymeric matrix simultaneously to their deposition on a TEM grid. Our technique is of general applicability and it avoids the use of cryo-TEM, which is more expensive, more time consuming and less common than ordinary TEM. Compared to the investigation of NPs aggregation in the liquid phase with dynamic light scattering, our approach avoids the problem of shielding by large aggregates and it allows the full exploitation of TEM advantages, primarily the reliable determination of shape and size of each aggregate and the precise evaluation of the number of single NPs forming each cluster. As an example, we demonstrate the use of our technique to study two frequent topics related to aggregation: the plasmon properties of gold NPs aggregates and the stability of iron oxide NPs in physiological environment. The methodology described here will be useful to advance the knowledge about how aggregation influences the physical-chemical properties of NPs.
机译:必须精确知道纳米颗粒(NPs)的聚集状态,以便研究其结构性质关系并评估NPs分散体在给定应用中的可利用性。在这里,我们报告了一种用于制备样品的通用技术,以利用透射电子显微镜(TEM)研究分散在液体溶液中的NP的聚集状态。在需要几分钟的简单过程之后,NP的聚集体同时在聚合物基质中“冻结”,同时又沉积在TEM网格上。我们的技术具有普遍适用性,并且避免了使用冷冻TEM,因为它比普通TEM昂贵,耗时且不常见。与通过动态光散射在液相中研究NPs聚集相比,我们的方法避免了被大聚集体屏蔽的问题,并且可以充分利用TEM的优势,主要是可靠地确定每种聚集体的形状和尺寸以及精确评估形成每个簇的单个NP的数量。例如,我们演示了使用我们的技术研究与聚集有关的两个常见主题:金纳米颗粒聚集体的等离子体特性和氧化铁纳米颗粒在生理环境中的稳定性。此处描述的方法将有助于增进有关聚集如何影响NP物理化学性质的知识。

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