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首页> 外文期刊>Advanced materials interfaces >Imaging and Analysis of Encapsulated Objects through Self-Assembled Electron and Optically Transparent Graphene Oxide Membranes
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Imaging and Analysis of Encapsulated Objects through Self-Assembled Electron and Optically Transparent Graphene Oxide Membranes

机译:通过自组装电子和光学透明石墨烯氧化膜进行成像和分析封装物体

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摘要

This study demonstrates a technique for facile encapsulation and adhesion of micro- and nanoobjects on arbitrary substrates, stencils, and microstructured surfaces by ultrathin graphene oxide membranes via a simple drop casting of graphene oxide solution. A self-assembled encapsulating membrane forms during the drying process at the liquid–air and liquid– solid interfaces and consists of a water-permeable quasi-2D network of overlapping graphene oxide flakes. Upon drying and interlocking between the flakes, the encapsulating coating around the object becomes mechanically robust, chemically protective, and yet highly transparent to electrons and photons in a wide energy range, enabling microscopic and spectroscopic access to encapsulated objects. The characteristic encapsulation scenarios have been demonstrated on a set of representative inorganic and organic micro- and nanoobjects and microstructured surfaces. Different coating regimes can be achieved by controlling the pH of the supporting solution, and the hydrophobicity and morphology of interfaces. Several specific phenomena, such as compression of encased objects by contracting membranes as well as hierarchical encapsulations, have been observed. Finally, electron/optical microscopy, analysis of encapsulated objects, and the effect of membrane on the image contrast formation and signal attenuation are discussed.
机译:该研究通过超薄石墨烯氧化物膜通过石墨烯氧化物溶液的简单浇铸,通过简单的滴液浇铸,证明了一种穿着封装和纳米喷射器的封装和粘附性的技术。在液体 - 空气和液体固体界面的干燥过程中进行自组装封装膜形式,包括用于重叠的石墨烯涂料的水可渗透的准2D网络。在薄片之间干燥和互锁时,围绕物体的包封涂层变得机械鲁棒,化学保护,并且在宽能量范围内对电子和光子具有高度透明的,使微观和光谱进入封装的物体。已经在一组代表性无机和有机微型和纳米料和微结构表面上证明了特征封装方案。通过控制支持溶液的pH和界面的疏水性和形态来实现不同的涂层制度。已经观察到几种特定现象,例如通过收缩膜以及分层封装来压缩被包裹的物体。最后,讨论了电子/光学显微镜,封装对象的分析,以及膜对图像对比形成和信号衰减的影响。

著录项

  • 来源
    《Advanced materials interfaces》 |2017年第2期|共11页
  • 作者单位

    Center for Nanoscale Science and Technology NIST 100 Bureau Drive Gaithersburg MD 20899–6204 USA;

    Department of Chemistry University of Nebraska–Lincoln Lincoln NE 68588 USA;

    Department of Chemical &

    Biomolecular Engineering University of Maryland College Park MD 20742–2111 USA;

    Department of Chemistry University of Nebraska–Lincoln Lincoln NE 68588 USA;

    Institute for Research in Electronics and Applied Physics University of Maryland College Park MD 20742 USA;

    Center for Nanoscale Science and Technology NIST 100 Bureau Drive Gaithersburg MD 20899–6204 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    demonstrates; technique; facile;

    机译:证明;技术;容易;

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