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Suspended BOPG nanosheets for HOPG nanoresonator engineering and new carbon nanostructure synthesis

机译:用于HOPG纳米谐振器工程和新型碳纳米结构合成的悬浮BOPG纳米片

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摘要

Suspended highly oriented pyrolytic graphite (HOPG) nanosheets (10-300 nm thick) were created by direct mechanical cleavage of a bulk HOPG crystal onto silicon micropillars and microtracks. We show that suspended HOPG nanosheets can be used to engineer HOPG nanoresonators such as membranes, bridges, and cantilevers as thin as 28 carbon atom layers. We measured by Doppler laser heterodyne interferometry that the discrete vibration modes of an HOPG nanosheet membrane and the resonance frequency of a FIB-created HOPG microcantilever lie in the MHz frequency regime. Moreover, a new carbon nanostructure, named 'nanolace', was synthesized by focused ion beam (FIB) sputtering of suspended HOPG nanosheets. Graphite nanosheets suspended on micropillars were eroded by a FIB to create self-oriented pseudo-periodical ripples. Additional sputtering and subsequent milling of these ripples led to the formation of honeycomb-like shaped nanolaces suspended and linked by ribbons.
机译:悬浮的高度定向的热解石墨(HOPG)纳米片(10-300 nm厚)是通过将大块HOPG晶体直接机械切割到硅微柱和微径上而产生的。我们表明,悬浮的HOPG纳米片可以用于工程化HOPG纳米共振器,例如膜,桥和悬臂,薄至28个碳原子层。我们通过多普勒激光外差干涉测量法测量到,HOPG纳米片膜的离散振动模式和FIB创建的HOPG微悬臂梁的共振频率位于MHz频率范围内。此外,通过悬浮HOPG纳米片的聚焦离子束(FIB)溅射合成了一种名为'nanolace'的新碳纳米结构。悬浮在微柱上的石墨纳米片被FIB侵蚀,形成了自我定向的伪周期波纹。这些波纹的额外溅射和随后的研磨导致形成通过丝带悬浮和连接的蜂窝状纳米带。

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