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氦离子显微镜下的石墨烯:束损伤、图像质量和边缘对比度。

Helium ion microscopy of graphene: beam damage, image quality and edge contrast.

机构信息

School of Physics and CRANN, Trinity College Dublin, Dublin 2, Republic of Ireland.

出版信息

Nanotechnology. 2013 Aug 23;24(33):335702. doi: 10.1088/0957-4484/24/33/335702. Epub 2013 Jul 24.

Abstract

A study to analyse beam damage, image quality and edge contrast in the helium ion microscope (HIM) has been undertaken. The sample investigated was graphene. Raman spectroscopy was used to quantify the disorder that can be introduced into the graphene as a function of helium ion dose. The effects of the dose on both freestanding and supported graphene were compared. These doses were then correlated directly to image quality by imaging graphene flakes at high magnification. It was found that a high magnification image with a good signal to noise ratio will introduce very significant sample damage. A safe imaging dose of the order of 10(13) He(+) cm(-2) was established, with both graphene samples becoming highly defective at doses over 5 × 10(14) He(+) cm(-2).The edge contrast of a freestanding graphene flake imaged in the HIM was then compared with the contrast of the same flake observed in a scanning electron microscope and a transmission electron microscope. Very strong edge sensitivity was observed in the HIM. This enhanced edge sensitivity over the other techniques investigated makes the HIM a powerful nanoscale dimensional metrology tool, with the capability of both fabricating and imaging features with sub-nanometre resolution.

摘要

已经进行了一项分析氦离子显微镜(HIM)中的光束损伤、图像质量和边缘对比度的研究。研究的样品是石墨烯。拉曼光谱用于定量测量作为氦离子剂量函数引入石墨烯的无序程度。比较了剂量对独立和支撑石墨烯的影响。然后,通过高倍放大成像石墨烯薄片,将这些剂量直接与图像质量相关联。结果发现,具有高信噪比的高倍放大图像会引入非常显著的样品损伤。建立了一个安全的成像剂量,约为 10(13)He(+)cm(-2),在剂量超过 5×10(14)He(+)cm(-2)时,两个石墨烯样品都变得高度缺陷。然后将在 HIM 中成像的独立石墨烯薄片的边缘对比度与在扫描电子显微镜和透射电子显微镜中观察到的相同薄片的对比度进行比较。在 HIM 中观察到非常强的边缘灵敏度。与所研究的其他技术相比,这种增强的边缘灵敏度使 HIM 成为一种强大的纳米级尺寸计量工具,具有亚纳米分辨率的制造和成像功能。

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