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Nanostructuring graphene by dense electronic excitation

机译:密集电子激发纳米结构石墨烯

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The ability to manufacture tailored graphene nanostructures is a key factor to fully exploit its enormous technological potential. We have investigated nanostructures created in graphene by swift heavy ion induced folding. For our experiments, single layers of graphene exfoliated on various substrates and freestanding graphene have been irradiated and analyzed by atomic force and high resolution transmission electron microscopy as well as Raman spectroscopy. We show that the dense electronic excitation in the wake of the traversing ion yields characteristic nanostructures each of which may be fabricated by choosing the proper irradiation conditions. These nanostructures include unique morphologies such as closed bilayer edges with a given chirality or nanopores within supported as well as freestanding graphene. The length and orientation of the nanopore, and thus of the associated closed bilayer edge, may be simply controlled by the direction of the incoming ion beam. In freestanding graphene, swift heavy ion irradiation induces extremely small openings, offering the possibility to perforate graphene membranes in a controlled way.
机译:制造定制的石墨烯纳米结构的能力是充分利用其巨大技术潜力的关键因素。我们已经研究了石墨烯通过快速重离子诱导的折叠产生的纳米结构。对于我们的实验,已经通过原子力和高分辨率透射电子显微镜以及拉曼光谱对剥离在各种基材上的单层石墨烯和独立式石墨烯进行了辐照和分析。我们表明,在遍历离子之后密集的电子激发产生了特征性的纳米结构,每个纳米结构都可以通过选择合适的照射条件来制造。这些纳米结构包括独特的形态,例如具有给定的手性的封闭双层边缘或支撑的石墨烯以及独立的石墨烯。纳米孔的长度和取向以及相关的封闭双层边缘的长度和取向可以简单地由入射离子束的方向控制。在独立式石墨烯中,快速的重离子辐照会产生极小的开口,从而提供了以受控方式对石墨烯膜穿孔的可能性。

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