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Controllable Fabrication of Large-Area Wrinkled Graphene on a Solution Surface

机译:溶液表面上大面积起皱石墨烯的可控制备

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It is unavoidable to form wrinkles, which are folds or creases in a material, in graphene, whenever the graphene is prepared by micromechanical exfoliation from graphite or chemical vapor deposition (CVD). However, the controllable formation and structures of graphene with nanoscale wrinkles remains a big challenge. Here, we report a liquid-phase shrink method to controllably fabricate large area wrinkled graphene (WG). The CVD-prepared graphene self-shrinks into a WG on an ethanol solution surface. By modifying the concentration of the ethanol solution, we can easily and efficiently obtain WG with a uniform distribution of wrinkles with different heights. The WG shows high stretchability and can withstand more than 100% tensile strain and up to 720 degrees twist. Furthermore, electromechanical response sensors based on double-layer stacking of WG show ultrahigh sensitivity. This simple, effective, and environmentally friendly liquid-phase shrink method will pave a way for the controllable formation of WG, which is an ideal candidate for application in highly stretchable and highly sensitive electronic devices.
机译:每当通过石墨的微机械剥离或化学气相沉积(CVD)制备石墨烯时,不可避免地会在石墨烯中形成褶皱,该褶皱是材料中的褶皱或折痕。然而,具有纳米级皱纹的石墨烯的可控形成和结构仍然是一个很大的挑战。在这里,我们报告一种液相收缩法可控地制造大面积起皱的石墨烯(WG)。 CVD制备的石墨烯在乙醇溶液表面上自动收缩成WG。通过改变乙醇溶液的浓度,我们可以轻松有效地获得具有不同高度的皱纹均匀分布的WG。 WG显示出高拉伸性,可以承受超过100%的拉伸应变和高达720度的扭曲。此外,基于WG双层堆叠的机电响应传感器显示出超高的灵敏度。这种简单,有效且环保的液相收缩方法将为可控的WG形成铺平道路,这是在高拉伸性和高灵敏度电子设备中应用的理想选择。

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