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Graphene nanoribbon devices produced by oxidative unzipping of carbon nanotubes

机译:通过碳纳米管的氧化解压缩生产的石墨烯纳米带器件

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摘要

We demonstrate that graphene nanoribbons (GNRs), produced by the chemical unzipping of carbon nanotubes, can be conveniently used from solution to hand-paint unidirectional arrays of GNRs atop silicon oxide. Through this simple alignment technique, numerous GNR-based devices, including field effect transistors, sensors, and memories can be easily fabricated on a single chip, and then used to generate statistically relevant device assessments. Such studies immediately give insights into, for example, multilayering properties on conductance, the profound effects that atmospheric adsorbates have upon the transfer characteristics of graphene, and other phenomena affecting the performance of GNR devices.
机译:我们证明,通过碳纳米管的化学解压缩产生的石墨烯纳米带(GNR)可以方便地用于从溶液到氧化硅上面的GNR的手绘单向阵列。通过这种简单的对准技术,可以轻松地在单个芯片上制造包括场效应晶体管,传感器和存储器在内的众多基于GNR的器件,然后将其用于生成统计上相关的器件评估。此类研究可立即洞悉例如电导的多层特性,大气吸附物对石墨烯的传输特性产生的深远影响以及影响GNR器件性能的其他现象。

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