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Graphene Liquid Cell Electron Microscopy: Progress, Applications, and Perspectives

机译:石墨烯液体电池电子显微镜:进度,应用和观点

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摘要

Graphene liquid cell electron microscopy (GLC-EM), a cutting-edge liquid-phase EM technique, has become a powerful tool to directly visualize wet biological samples and the microstructural dynamics of nanomaterials in liquids. GLC uses graphene sheets with a one carbon atom thickness as a viewing window and a liquid container. As a result, GLC facilitates atomic-scale observation while sustaining intact liquids inside an ultrahigh-vacuum transmission electron microscopy chamber. Using GLC-EM, diverse scientific results have been recently reported in the material, colloidal, environmental, and life science fields. Here, the developments of GLC fabrications, such as first-generation veil-type cells, second-generation well-type cells, and third-generation liquid-flowing cells, are summarized. Moreover, recent GLC-EM studies on colloidal nanoparticles, battery electrodes, mineralization, and wet biological samples are also highlighted. Finally, the considerations and future opportunities associated with GLC-EM are discussed to offer broad understanding and insight on atomic-resolution imaging in liquid-state dynamics.
机译:石墨烯液胞电子显微镜(GLC-EM)是一种前沿的液相EM技术,已成为直接可视化湿生物样品和液体中纳米材料微观结构动力学的有力工具。GLC使用单碳原子厚度的石墨烯片作为观察窗口和液体容器。因此,GLC有助于原子尺度的观察,同时在超高真空透射电子显微镜室内维持完整的液体。使用GLC-EM,最近在材料、胶体、环境和生命科学领域报告了多种科学结果。本文综述了第一代面纱型电池、第二代阱型电池和第三代液体流动电池等GLC制备技术的发展。此外,最近GLC-EM对胶体纳米颗粒、电池电极、矿化和湿生物样品的研究也得到了强调。最后,讨论了与GLC-EM相关的考虑因素和未来机会,以提供对液态动力学中原子分辨率成像的广泛理解和见解。

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