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Graphene-Sealed Flow Cells for In Situ Transmission Electron Microscopy of Liquid Samples

机译:石墨烯密封的流动电池用于原位透射电子显微镜的液体样品

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摘要

We introduce a graphene-based nanofluidic cell that facilitates in situ imaging of liquid samples via transmission electron microscopy. The cell combines the benefits of graphene liquid cells—namely, high resolution, reduced charging effects, and excellent sample stability—with the ability to introduce reactants and control fluid concentrations as provided by conventional silicon-nitride-windowed flow cells. The graphene flow cell offers significantly less window bowing compared to existing commercial holders. We demonstrate the performance of the flow cell by imaging gold nanoparticle dynamics and uranyl acetate crystallization. Our results confirm the utility of graphene flow cells in obtaining the high spatial and temporal resolution required for probing the complex dynamics of nanoparticles and nucleation pathways in aqueous solutions.
机译:我们介绍一种基于石墨烯的纳米流体细胞,便于通过透射电子显微镜促进液体样品的原位成像。 该细胞结合了石墨烯液体细胞的益处 - 即高分辨率,降低的充电效果和优异的样品稳定性 - 具有引入反应物和控制流体浓度的能力,如常规氮化硅窗口流动细胞所提供的。 与现有的商用持有者相比,石墨烯流动电池提供较少的窗口弯曲。 我们通过成像金纳米粒子动力学和乙酸铀结晶来证明流动池的性能。 我们的结果证实了石墨烯流细胞在获得探测纳米颗粒和核心途径中的复杂动态所需的高空间和时间分辨率,以及在水溶液中的核心。

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