首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Three-Dimensional Transmission Electron Microscopy: A Novel Imaging and Characterization Technique with Nanometer Scale Resolution for Materials Science
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Three-Dimensional Transmission Electron Microscopy: A Novel Imaging and Characterization Technique with Nanometer Scale Resolution for Materials Science

机译:三维透射电子显微镜:一种用于材料科学的具有纳米尺度分辨率的新型成像和表征技术

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摘要

Three-dimensional transmission electron microscopy (3D-TEM), effectuated by multiple imaging of a sample combined with image analysis, offers a new approach in materials science to obtain 3D information of complex solid materials. Here we report first-of-its-kind results that have been obtained with zeolite materials. Virtual cross-sections and volume rendering of the 3D reconstruction of a metal/zeolite crystal (Ag/NaY) give unequivocal information on the location of the silver particles (10-40 nm in diameter). Virtual cross-sections of the 3D reconstruction of an acid-leached mordenite show the three-dimensional mesoporous channel system (3-20 nm in diameter) with a clarity and definition not seen before.
机译:通过对样品进行多次成像并结合图像分析实现的三维透射电子显微镜(3D-TEM),为材料科学提供了一种获取复杂固体材料3D信息的新方法。在这里,我们报告使用沸石材料获得的首个结果。金属/沸石晶体(Ag / NaY)的3D重建的虚拟横截面和体积渲染提供了有关银颗粒位置(直径为10-40 nm)的明确信息。酸浸丝光沸石的3D重建的虚拟横截面显示了三维介孔通道系统(直径3-20 nm),其清晰度和清晰度从未见过。

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