Nottbohm Christoph T, Beyer Andre, Sologubenko Alla S, Ennen Inga, Hütten Andreas, Rösner Harald, Eck Wolfgang, Mayer Joachim, Gölzhäuser Armin
Fakultät für Physik, Universität Bielefeld, Postfach 10 01 31, 33501 Bielefeld, Germany.
Ultramicroscopy. 2008 Aug;108(9):885-92. doi: 10.1016/j.ultramic.2008.02.008. Epub 2008 Mar 5.
The resolution in transmission electron microscopy (TEM) has reached values as low as 0.08 nm. However, these values are not accessible for very small objects in the size range of a few nanometers or lower, as they have to be placed on some support, which contributes to the overall electron-scattering signal, thereby blurring the contrast. Here, we report on the use of nanosheets made from cross-linked aromatic self-assembled monolayers as TEM sample supports. When transferred onto a copper grid, a single 1.6-nm-thick nanosheet can cover the grid and is free standing within the micron-sized openings. Despite its thinness, the sheet is stable under the impact of the electron beam. Micrographs taken from nanoclusters onto these nanosheets show highly increased contrast in comparison to the images taken from amorphous carbon supports. In scanning transmission electron microscopy with nanosheet support, a size analysis of sub-nanometer Au clusters was performed and single Au atoms were resolved.
透射电子显微镜(TEM)的分辨率已低至0.08纳米。然而,对于几纳米或更小尺寸范围内的非常小的物体,这些分辨率无法实现,因为它们必须放置在某种支撑物上,而支撑物会对整体电子散射信号产生影响,从而模糊对比度。在此,我们报告了使用由交联芳香自组装单分子层制成的纳米片作为TEM样品支撑物。当转移到铜网上时,单个1.6纳米厚的纳米片可以覆盖铜网,并在微米级的开口内独立存在。尽管很薄,但该片在电子束的冲击下仍很稳定。与从非晶碳支撑物上拍摄的图像相比,从这些纳米片上的纳米团簇拍摄的显微照片显示出对比度大大提高。在使用纳米片支撑的扫描透射电子显微镜中,对亚纳米级金团簇进行了尺寸分析,并分辨出了单个金原子。