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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Graphene liquid cells for multi-technique analysis of biological cells in water environment
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Graphene liquid cells for multi-technique analysis of biological cells in water environment

机译:石墨烯液体细胞,用于水环境中生物细胞的多技术分析

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In-cell exploration of biomolecular constituents is the newfrontier of cellular biology that will allow full access to structure-activity correlation of biomolecules, overcoming the limitations imposed by dissecting the cellular milieu. However, the presence of water, which is a very strong IR absorber and incompatible with the vacuum working conditions of all analytical methods using soft x-rays and electrons, poses severe constraint to perform important imaging and spectroscopic analyses under physiological conditions. Recent advances to separate the sample compartment in liquid cell are based on electron and photon transparent but molecular-impermeable graphene membranes. This strategy has opened a unique opportunity to explore technological materials under realistic operation conditions using various types of electron microscopy. However, the widespread of the graphene liquid cell applications is still impeded by the lack of well-established approaches for their massive production. We report on the first preliminary results for the fabrication of reproducible graphene liquid cells appropriate for the analysis of biological specimens in their natural hydrated environment with several crucial analytical techniques, namely FTIR microscopy, Raman spectroscopy, AFM, SEM and TEM.
机译:对生物分子成分的细胞内探测是细胞生物学的新前,可以完全访问生物分子的结构 - 活性相关性,克服通过解剖细胞环境来施加的限制。然而,存在水的存在,这是一种非常强的IR吸收器,与使用软X射线和电子的所有分析方法的真空工作条件不相容,在生理条件下进行严重约束,以在生理条件下进行重要的成像和光谱分析。最近将样品隔室分离在液体细胞中的进展基于电子和光子透明但是分子不透水的石墨烯膜。该策略开设了一种独特的机会,可以使用各种类型的电子显微镜在现实操作条件下探索技术材料。然而,石墨烯液体电池应用的广泛仍然受到缺乏良好的巨大生产方法的影响。我们报告了适合于分析其天然水合环境中生物标本的可重复石墨烯液体细胞的第一个初步结果,其具有若干关键的分析技术,即FTIR显微镜,拉曼光谱,AFM,SEM和TEM。

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