Transmission electron microscopy for materials science

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École Polytechnique Fédérale de Lausanne

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Learn about the fundamentals of transmission electron microscopy in materials sciences: you will be able to understand papers where TEM has been used and have the necessary theoretical basis for taking a practical training on the TEM. This course provides a comprehensive introduction to transmission electron microscopy (TEM) in the field of materials science. For an instrument operated by a single user, modern TEM provides an analytical platform with unsurpassed versatility, giving access to structural and chemical information from the micrometer to the sub-angstrom scale. In a thin, electron-transparent sample one can measure the crystallinity, grain structure, size, and defects, and the chemical composition. The crystal lattice can be imaged with atomic resolution, allowing observation of grain boundaries and interfaces. It is the only direct structural analysis method for studying nanoparticles. With this course you will gain a deep understanding of modern TEM and the connection between: - the optics and operation of the instrument; - the physics of electron-matter interactions; - insights into the materials properties of the sample. This gives the background to: - identify TEM techniques suitable to solving specific scientific problems; - interpret TEM data presented in articles; appreciate the impact of technological advances that have, for instance, led to sub-angstrom resolution by aberration correction. It can also be the basis for subsequent practical training on this remarkable instrument, and a stepping stone towards learning very advanced techniques with magical names like “dark field holography” or “angular resolved electron energy-loss spectroscopy”. Recommended background: Basics of crystallography and diffraction, college optics (construction of ray diagrams) are absolutely mandatory prerequisites; Fourier optics, more advanced crystallography and solid state physics are of great advantage.

材料科学的透射电子显微镜:了解材料科学的透射电子显微镜的基础知识:您将能够了解使用TEM的论文,并具有进行TEM实际培训的必要理论基础。 本课程全面介绍了材料科学领域中的透射电子显微镜(TEM)。对于由单个用户操作的仪器,现代TEM提供了具有无与伦比的多功能性的分析平台,可以访问从千分尺到亚埃标度的结构和化学信息。在薄的电子透明样品中,可以测量结晶度,晶粒结构,尺寸和缺陷以及化学成分。可以以原子分辨率对晶格成像,从而可以观察晶界和界面。它是研究纳米颗粒的唯一直接的结构分析方法。   通过本课程,您将对现代TEM及其之间的联系有深入的了解: -仪器的光学和操作; -电子物质相互作用的物理学; -深入了解样品的材料特性。 这样可以使背景: -确定适合解决特定科学问题的TEM技术; -解释文章中提供的TEM数据;感谢技术进步的影响,这些进步例如通过像差校正导致了亚埃分辨率。 它也可以作为后续在此卓越仪器上进行实践培训的基础,并为学习具有神奇名称(如“暗场全息术”或“角分辨电子能量损失谱”)的非常先进的技术奠定基础。 推荐背景: 晶体学和衍射学的基本知识,大学光学(射线图的构建)是绝对必要的先决条件;傅立叶光学,更高级的晶体学和固态物理学具有巨大的优势。

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