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用于透射电子显微镜的石墨烯液体池的制备策略。

Strategies for Preparing Graphene Liquid Cells for Transmission Electron Microscopy.

机构信息

INM, Leibniz Institute for New Materials , D-66123 Saarbrücken , Germany.

Department of Physics , Saarland University , D-66123 Saarbrücken , Germany.

出版信息

Nano Lett. 2018 Jun 13;18(6):3313-3321. doi: 10.1021/acs.nanolett.8b01366. Epub 2018 May 25.

Abstract

A graphene liquid cell for transmission electron microscopy (TEM) uses one or two graphene sheets to separate the liquid from the vacuum in the microscope. In principle, graphene is an excellent material for such an application because it allows the highest possible spatial resolution, provides a flexible covering foil, and effectively protects the liquid from evaporating. Examples in open literature have demonstrated atomic-resolution TEM using small liquid pockets and the coverage of whole biological cells with graphene sheets. A total of three different basic types of liquid cells are discerned: (i) one graphene sheet is used to cover a liquid sample supported by a thin membrane of another material (for example, silicon nitride, SiN), (ii) two graphene sheets pressed together leaving liquid pockets with graphene at both sides, and (iii) a spacer material with liquid pockets covered at both sides by graphene. A total of four different process flows are available for liquid cell assembly, but there is not yet a consensus on the best routes, and a number of variations exist. The key step is the transfer of graphene to a liquid sample, which is complicated by practical issues that arise from imperfections in the graphene sheets, such as cracks. This review provides an overview of these different approaches to assembling graphene liquid cells and discusses the main obstacles and ideas to overcome them with the prospect of developing the nanoscale technology needed for graphene liquid cells so that they become available on a routine basis for electron microscopy in liquid. It also provides guidance in selecting the appropriate type of graphene liquid cell and the best assembly method for a specific experiment.

摘要

用于透射电子显微镜(TEM)的石墨烯液体池使用一个或两个石墨烯片将液体与显微镜中的真空隔开。原则上,石墨烯是此类应用的理想材料,因为它可以实现尽可能高的空间分辨率,提供灵活的覆盖箔,并有效地防止液体蒸发。文献中的实例已经证明了使用小液滴和石墨烯片覆盖整个生物细胞的原子分辨率 TEM。总共可以识别出三种不同的基本类型的液体池:(i)使用一个石墨烯片覆盖由另一种材料(例如氮化硅,SiN)支撑的液体样品的薄膜,(ii)将两个石墨烯片压在一起,在两侧留下石墨烯液体口袋,以及(iii)在两侧用石墨烯覆盖的间隔材料的液体口袋。共有四种不同的液体池组装工艺,但对于最佳路线尚未达成共识,并且存在多种变体。关键步骤是将石墨烯转移到液体样品上,但由于石墨烯片的不完美,例如裂缝,这会带来一些实际问题。这篇综述概述了组装石墨烯液体池的这些不同方法,并讨论了克服这些主要障碍的想法,以期开发出用于石墨烯液体池的纳米技术,使其在液体电子显微镜中常规使用。它还为选择合适的石墨烯液体池类型和特定实验的最佳组装方法提供了指导。

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