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原子尺度观测悬浮少层石墨烯片中的旋转位错。

Atomic-scale observation of rotational misorientation in suspended few-layer graphene sheets.

机构信息

Center for Mechanical Technology & Automation, University of Aveiro, 3810-193 Aveiro, Portugal.

出版信息

Nanoscale. 2010 May;2(5):700-8. doi: 10.1039/b9nr00256a. Epub 2010 Jan 7.

Abstract

Single or few-layer graphene (FLG) sheets offer extraordinary electronic, thermal and mechanical properties and are expected to find a variety of applications. Fully exploiting the properties of graphene will require a method for the production of high-quality graphene sheets (almost pristine graphene) in large quantities. In this regard, we report a two-step method for obtaining a homogenous colloidal suspension of single or FLG sheets up to 0.15 mg ml(-1) in N,N-dimethylformamide solution. The graphene nanostructures are directly imaged using a high-resolution transmission electron microscope (HRTEM) operated at 200 kV with a point resolution of 0.16 nm. We observed rotational misorientation within the flake in the HRTEM images of 2, 4 and 6 layers of graphene sheets, giving rise to Moiré patterns. By filtering in the frequency domain using a Fourier transform, we reconstruct the graphene lattice of each sheet and determine the relative rotation between consecutive graphene layers up, to six separate sheets. Direct evidence is obtained for FLG sheets with packing that is different to the standard AB Bernal packing of bulk graphite. Furthermore, we observed periodic ripples in suspended graphene sheets in our TEM measurements. Electrostatic force microscopy was used to characterize the electric potential distribution on the surface of FLG sheets on SiO2/Si substrates in ambient conditions. The FLG sheets were found to exhibit a conducting nature with small potential variations on the surface.

摘要

单层或少数层石墨烯(FLG)薄片具有非凡的电子、热和机械性能,预计将有各种应用。充分利用石墨烯的特性需要一种方法来大量生产高质量的石墨烯薄片(几乎是原始石墨烯)。在这方面,我们报告了一种两步法,用于在 N,N-二甲基甲酰胺溶液中获得高达 0.15 mg ml(-1)浓度的单或 FLG 薄片均匀胶体悬浮液。使用在 200 kV 下操作的高分辨率透射电子显微镜(HRTEM)直接对石墨烯纳米结构进行成像,其点分辨率为 0.16 nm。我们在 2、4 和 6 层石墨烯薄片的 HRTEM 图像中观察到薄片内的旋转取向失配,从而产生莫尔图案。通过在频域中使用傅里叶变换进行滤波,我们重建了每个薄片的石墨烯晶格,并确定了相邻石墨烯层之间的相对旋转,最多可达六个单独的薄片。直接证明了具有与块状石墨的标准 AB 伯纳尔堆积不同堆积的 FLG 薄片。此外,我们在 TEM 测量中观察到悬浮石墨烯薄片中的周期性波纹。在环境条件下,使用静电力显微镜来表征 SiO2/Si 衬底上 FLG 薄片表面的电势分布。发现 FLG 薄片具有导电性质,表面上的电势变化很小。

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