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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Sublattice Resolution Structural and Chemical Analysis of Individual CdSe Nanocrystals Using Atomic Number Contrast Scanning Transmission Electron Microscopy and Electron Energy Loss Spectroscopy
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Sublattice Resolution Structural and Chemical Analysis of Individual CdSe Nanocrystals Using Atomic Number Contrast Scanning Transmission Electron Microscopy and Electron Energy Loss Spectroscopy

机译:原子序数对比扫描透射电子显微镜和电子能量损失谱法对单个CdSe纳米晶的亚晶格分辨结构和化学分析

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摘要

Atomic number contrast scanning transmission electron microscopy (Z-STEM), with atomic resolution and sub-nanometer resolution scanning transmission electron miroscope electron energy loss spectroscopy (STEM-EELS), was used to study single colloidal CdSe semiconductor nanocrystals embedded in MEH-PPV polymer films. The atomic columbi-resolved Z-STEM image provides information both on the lateral shape of the nanocrsytal, as well as the relative thickness of the individual atom columns from a single image. The three-dimensional shape profile reconstructed from the data metches the predicted model. Furthermore, the sublattice is resolved so the polar surfaces can be uniquely identified. Sub-nanometer resolution EELS measurements on an individual nanocrystal indicate the presence of oxygen. The spatial distribution of the oxygen signal in the EELS measurement suggests a thin oxide layer on the nanocrystal surface.
机译:原子序数对比扫描透射电子显微镜(Z-STEM),具有原子分辨率和亚纳米分辨率扫描透射电子显微镜电子能量损失谱(STEM-EELS),用于研究嵌入MEH-PPV聚合物中的单胶体CdSe半导体纳米晶体电影。原子哥伦比分辨的Z-STEM图像提供有关纳米晶的横向形状以及单个图像中单个原子列的相对厚度的信息。从数据重建的三维形状轮廓符合预测模型。此外,亚晶格被解析,因此可以唯一地识别极性表面。对单个纳米晶体的亚纳米分辨率EELS测量表明存在氧。 EELS测量中氧气信号的空间分布表明,纳米晶体表面有一层薄氧化层。

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