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Nanometer-resolution electron microscopy through micrometers-thick water layers

机译:通过微米级厚水层的纳米级电子显微镜

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Scanning transmission electron microscopy (STEM) was used to image gold nanoparticles on top of and below saline water layers of several micrometers thickness. The smallest gold nanoparticles studied had diameters of 1.4 nm and were visible for a liquid thickness of up to 33 μm. The imaging of gold nanoparticles below several micrometers of liquid was limited by broadening of the electron probe caused by scattering of the electron beam in the liquid. The experimental data corresponded to analytical models of the resolution and of the electron probe broadening as function of the liquid thickness. The results were also compared with Monte Carlo simulations of the STEM imaging on modeled specimens of similar geometry and composition as used for the experiments. Applications of STEM imaging in liquid can be found in cell biology, e.g., to study tagged proteins in whole eukaryotic cells in liquid and in materials science to study the interaction of solid:liquid interfaces at the nanoscale.
机译:扫描透射电子显微镜(STEM)用于对几微米厚的盐水层顶部和下方的金纳米颗粒成像。所研究的最小的金纳米颗粒的直径为1.4 nm,液体厚度最大为33μm时可见。在数微米液体以下的金纳米粒子的成像受到电子探针在液体中散射引起的电子探针加宽的限制。实验数据对应于分辨率和电子探针加宽作为液体厚度的函数的分析模型。还将结果与STEM成像的蒙特卡洛模拟进行了比较,该模拟是在用于实验的相似几何形状和成分的模型标本上进行的。 STEM成像在液体中的应用可以在细胞生物学中找到,例如,研究液体中整个真核细胞中的标记蛋白,以及在材料科学中研究纳米级的固液界面相互作用。

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