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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的氧化石墨烯膜对封装对象进行成像和分析

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摘要

We demonstrate a technique for facile encapsulation and adhesion of micro- and nano objects on arbitrary substrates, stencils, and micro structured 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 were demonstrated on a set of representative inorganic and organic micro and nano-objects 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 were observed. Finally, electron as well as optical microscopy and analysis of encapsulated objects along with the membrane effect on the image contrast formation, and signal attenuation are discussed
机译:我们演示了通过超薄氧化石墨烯膜通过简单的氧化石墨烯溶液滴铸法在任意基材,模板和微结构化表面上轻松封装和粘附微和纳米物体的技术。自组装的包封膜在干燥过程中在液-气和液-固界面处形成,由重叠的氧化石墨烯薄片的透水准2D网络组成。在薄片之间干燥并互锁后,物体周围的封装涂层变得具有机械强度,化学防护性,并且对宽泛的能量范围内的电子和光子高度透明,从而可以通过显微镜和光谱学接近封装的物体。在一组代表性的无机和有机微米和纳米物体以及微结构化表面上演示了特征性封装方案。通过控制支持溶液的pH值以及界面的疏水性和形态,可以实现不同的涂覆方式。观察到了几种特定现象,例如通过收缩膜压缩包裹的物体以及分层封装。最后,讨论了电子和光学显微镜以及封装对象的分析以及膜对图像对比度形成和信号衰减的影响。

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