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Versatile Polymer-Free Graphene Transfer Method and Applications

机译:通用的无聚合物石墨烯转移方法及其应用

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A new method for transferring chemical vapor deposition (CVD)-grown monolayer graphene to a variety of substrates is described. The method makes use of an organic/aqueous biphasic configuration, avoiding the use of any polymeric materials that can cause severe contamination problems. The graphene-coated copper foil sample (on which graphene was grown) sits at the interface between hexane and an aqueous etching solution of ammonium persulfate to remove the copper. With the aid of an Si/SiO2 substrate, the graphene layer is then transferred to a second hexane/water interface to remove etching products. From this new location, CVD graphene is readily transferred to arbitrary substrates, including three-dimensional architectures as represented by atomic force microscopy (AFM) tips and transmission electron microscopy (TEM) grids. Graphene produces a conformal layer on AFM tips, to the very end, allowing easy production of tips for conductive AFM imaging. Graphene transferred to copper TEM grids provides large-area, highly electron-transparent substrates for TEM imaging. These substrates can also be used as working electrodes for electrochemistry and high-resolution wetting studies. By using scanning electrochemical cell microscopy, it is possible to make electrochemical and wetting measurements at either a freestanding graphene film or a copper-supported graphene area and readily determine any differences in behavior.
机译:描述了一种将化学气相沉积(CVD)生长的单层石墨烯转移到各种基材的新方法。该方法利用有机/水两相构型,避免使用任何会引起严重污染问题的聚合材料。涂有石墨烯的铜箔样品(生长有石墨烯的样品)位于己烷和过硫酸铵蚀刻水溶液之间的界面处,以去除铜。然后借助于Si / SiO 2衬底,将石墨烯层转移到第二己烷/水界面以去除蚀刻产物。 CVD石墨烯可以从这个新位置轻松转移到任意衬底上,包括以原子力显微镜(AFM)尖端和透射电子显微镜(TEM)网格为代表的三维结构。直到最后,石墨烯都会在AFM针尖上形成保形层,从而可以轻松生产用于导电AFM成像的针尖。转移到铜TEM网格上的石墨烯为TEM成像提供了大面积,高度电子透明的基板。这些基材也可用作电化学和高分辨率润湿研究的工作电极。通过使用扫描电化学电池显微镜,可以在独立的石墨烯膜或铜支撑的石墨烯区域进行电化学和润湿测量,并容易确定行为上的任何差异。

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