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原位流体池透射电子显微镜的设计、制造及应用

Design, fabrication, and applications of in situ fluid cell TEM.

作者信息

Li Dongsheng, Nielsen Michael H, De Yoreo James J

机构信息

Physical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington, USA.

出版信息

Methods Enzymol. 2013;532:147-64. doi: 10.1016/B978-0-12-416617-2.00007-2.

Abstract

In situ fluid cell TEM is a powerful new tool for understanding dynamic processes during liquid phase chemical reactions, including mineral formation. This technique, which operates in the high vacuum of a TEM chamber, provides information on crystal structure, phase, morphology, size, aggregation/segregation, and crystal growth mechanisms in real time. In situ TEM records both crystal structure and morphology at spatial resolutions down to the atomic level with high temporal resolution of up to 10(-6)s per image, giving it distinct advantages over other in situ techniques such as optical microscopy, AFM, or X-ray scattering or diffraction. This chapter addresses the design, fabrication, and assembly of TEM fluid cells and applications of fluid cell TEM to understanding mechanisms of mineralization.

摘要

原位流体池透射电子显微镜是一种强大的新工具,用于理解液相化学反应(包括矿物形成)过程中的动态过程。该技术在透射电子显微镜腔室的高真空环境中运行,可实时提供有关晶体结构、相、形态、尺寸、聚集/分离以及晶体生长机制的信息。原位透射电子显微镜能够以高达每幅图像10^(-6)秒的高时间分辨率,在低至原子水平的空间分辨率下记录晶体结构和形态,这使其相对于其他原位技术(如光学显微镜、原子力显微镜或X射线散射或衍射)具有明显优势。本章将探讨透射电子显微镜流体池的设计、制造和组装,以及流体池透射电子显微镜在理解矿化机制方面的应用。

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