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二氧化硅上单层石墨烯中出现的天然纳米膜的双稳和振荡运动。

Bistability and oscillatory motion of natural nanomembranes appearing within monolayer graphene on silicon dioxide.

机构信息

2nd Institute of Physics B, RWTH Aachen University, 52074 Aachen, Germany.

出版信息

Nano Lett. 2010 Feb 10;10(2):461-5. doi: 10.1021/nl903133w.

Abstract

The truly two-dimensional material graphene is an ideal candidate for nanoelectromechanics due to its large strength and mobility. Here we show that graphene flakes provide natural nanomembranes of diameter down to 3 nm within its intrinsic rippling. The membranes can be lifted either reversibly or hysteretically by the tip of a scanning tunneling microscope. The clamped-membrane model including van-der-Waals and dielectric forces explains the results quantitatively. AC-fields oscillate the membranes, which might lead to a completely novel approach to controlled quantized oscillations or single atom mass detection.

摘要

真正的二维材料石墨烯由于其高强度和高迁移率,是纳米机电学的理想候选材料。在这里,我们展示了石墨烯薄片在其固有波纹内提供了直径可达 3nm 的天然纳米膜。通过扫描隧道显微镜的针尖可以可逆或滞后地抬起这些膜。包括范德华力和介电力在内的夹膜模型可以对结果进行定量解释。交流场使膜振动,这可能会导致一种全新的控制量子化振动或单个原子质量检测的方法。

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