首页> 外文会议>Microsystems for Measurement and Instrumentation (MAMNA), 2012 >Direction writing of graphene-based nanoribbons via thermochemical nanolithography
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Direction writing of graphene-based nanoribbons via thermochemical nanolithography

机译:石墨烯基纳米带的热化学纳米平版印刷

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This project employs direct writing with an atomic force microscope (AFM) to fabricate simple graphene-based electronic components like resistors and transistors at nanometer-length scales. The goal is to explore their electronic properties for graphene-based electronics. Conducting nanoribbons of graphene were fabricated using thermochemical nanolithography (TCNL). TCNL uses a heated AFM cantilever to provide precise local heating to an insulating fluorographene (FG) substrate. The heat reduces the substrate into a material known as reduced fluorographene (rFG) which exhibits electric properties close to those of pristine graphene. Compared to other attempts to produce graphene-based devices, this technique is simple, does not involve solvents or other complicated fabrication steps, and allows for the exact placement of the devices on the wafer.
机译:该项目采用原子力显微镜(AFM)进行直接书写,以纳米级尺度制作简单的基于石墨烯的电子组件,例如电阻器和晶体管。目的是探索其对于基于石墨烯的电子产品的电子性能。使用热化学纳米光刻(TCNL)制备了石墨烯的导电纳米带。 TCNL使用加热的AFM悬臂为绝缘的氟石墨烯(FG)基板提供精确的局部加热。热量将基材还原为一种称为还原氟石墨烯(rFG)的材料,该材料的电性能与原始石墨烯的电性能相近。与生产基于石墨烯的器件的其他尝试相比,该技术简单,不涉及溶剂或其他复杂的制造步骤,并且允许将器件精确地放置在晶圆上。

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