论文标题

石墨烯设备原位的映射电导和切换行为

Mapping Conductance and Switching Behavior of Graphene Devices In Situ

论文作者

Dyck, Ondrej, Swett, Jacob L., Evangeli, Charalambos, Lupini, Andrew R., Mol, Jan A., Jesse, Stephen

论文摘要

已经提出了石墨烯,用于在各种纳米电视设计中使用,其中许多利用了用于设备功能的新兴量子性能。然而,在纳米和原子尺度上,可视化,测量和操纵变得非平凡,代表了量子效应出现的长度尺度上的设备制造,表征和优化的重大挑战。在这里,我们在2D纳米电子设备,电子束诱导的调制和二次电子电子束诱导电流(sebbic)之间的十字路口介绍了原理结果证明。我们引入了与扫描传输电子显微镜研究兼容的设备平台。然后,我们展示了如何使用Seebic成像技术来可视化单层石墨烯纳米电视中的电导和连接性,即使在较厚的基板上受支持(常规成像失败的条件)。最后,我们表明,在非OHMIC石墨烯纳米收缩中,锯齿成像技术可以检测到通过时间的电荷传输的细微差异,这表明有可能揭示动态电子过程。

Graphene has been proposed for use in various nanodevice designs, many of which harness emergent quantum properties for device functionality. However, visualization, measurement, and manipulation become non-trivial at nanometer and atomic scales, representing a significant challenge for device fabrication, characterization, and optimization at length scales where quantum effects emerge. Here, we present proof of principle results at the crossroads between 2D nanoelectronic devices, e-beam-induced modulation, and imaging with secondary electron e-beam induced currents (SEEBIC). We introduce a device platform compatible with scanning transmission electron microscopy investigations. We then show how the SEEBIC imaging technique can be used to visualize conductance and connectivity in single layer graphene nanodevices, even while supported on a thicker substrate (conditions under which conventional imaging fails). Finally, we show that the SEEBIC imaging technique can detect subtle differences in charge transport through time in non-ohmic graphene nanoconstrictions indicating the potential to reveal dynamic electronic processes.

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