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Real-time imaging of lead nanoparticles in solution - determination of the growth mechanism

机译:溶液中铅纳米粒子的实时成像-生长机理的确定

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In situ electron microscopy is a tool which offers great promise for studying the mechanisms responsible for nanoparticle growth. In aqueous solution, the reduction of Pb2+ by the electron beam results in the formation of lead nanoparticles. Here, we directly examined the fundamental processes that influence the growth of lead nanoparticles in solution using in situ transmission electron microscopy. Lead nanoparticle growth was directly monitored at the molecular level and followed the sequence of nucleation, Ostwald ripening, and aggregative growth. The aggregative growth phase resulted in macrostructures having micron-sized dimensions. Importantly, when combined with quantitative measurements, our direct imaging results suggested that the growth properties observed for lead nanoparticles were unique in comparison to other metallic entities.
机译:原位电子显微镜是一种工具,为研究纳米颗粒生长的机理提供了广阔的前景。在水溶液中,电子束还原Pb2 +会导致形成铅纳米粒子。在这里,我们使用原位透射电子显微镜直接检查了影响溶液中铅纳米颗粒生长的基本过程。直接在分子水平上监测铅纳米粒子的生长,并遵循成核,奥斯特瓦尔德成熟和聚集生长的顺序。聚集的生长阶段导致宏观结构具有微米尺寸的尺寸。重要的是,当与定量测量相结合时,我们的直接成像结果表明,与其他金属实体相比,铅纳米颗粒观察到的生长特性是独特的。

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