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利用进动辅助衍射斑点识别实现透射电子显微镜中的取向和相位映射:最新研究成果。

Orientation and phase mapping in the transmission electron microscope using precession-assisted diffraction spot recognition: state-of-the-art results.

机构信息

CPCM Universitat de Barcelona, Facultat de Química, Departament de Ciencia de Materials i Enginyeria Metallúrgica, Barcelona, Catalunya, Spain.

出版信息

J Microsc. 2013 Oct;252(1):23-34. doi: 10.1111/jmi.12065. Epub 2013 Jul 24.

Abstract

A recently developed technique based on the transmission electron microscope, which makes use of electron beam precession together with spot diffraction pattern recognition now offers the possibility to acquire reliable orientation/phase maps with a spatial resolution down to 2 nm on a field emission gun transmission electron microscope. The technique may be described as precession-assisted crystal orientation mapping in the transmission electron microscope, precession-assisted crystal orientation mapping technique-transmission electron microscope, also known by its product name, ASTAR, and consists in scanning the precessed electron beam in nanoprobe mode over the specimen area, thus producing a collection of precession electron diffraction spot patterns, to be thereafter indexed automatically through template matching. We present a review on several application examples relative to the characterization of microstructure/microtexture of nanocrystalline metals, ceramics, nanoparticles, minerals and organics. The strengths and limitations of the technique are also discussed using several application examples.

摘要

一种最近开发的技术基于透射电子显微镜,它利用电子束进动和斑点衍射模式识别,现在提供了在场发射枪透射电子显微镜上以 2nm 的空间分辨率获得可靠取向/相图的可能性。该技术可以描述为在透射电子显微镜中辅助进动晶体取向测绘,也称为其产品名称 ASTAR,它包括以纳米探针模式扫描进动电子束在样品区域上,从而产生一系列进动电子衍射斑点图案,然后通过模板匹配自动索引。我们介绍了几个应用实例的综述,涉及纳米晶体金属、陶瓷、纳米粒子、矿物和有机物的微观结构/微观织构的表征。还使用几个应用实例讨论了该技术的优缺点。

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