Automated nanocrystal orientation and phase mapping in the transmission electron microscope on the basis of precession electron diffraction

Author:

Rauch Edgar F.,Portillo Joaquin1,Nicolopoulos Stavros2,Bultreys Daniel2,Rouvimov Sergei3,Moeck Peter4

Affiliation:

1. NanoMEGAS SPRL, Brussels, Belgien

2. NanoMEGAS SPRL, Saint Jean Molenbeek, Brussels, Belgien

3. University de Barcelona, SERVEIS Cientificotecnics, Barcelona, Spanien

4. Portland State University, Department of Physics, Portland, Oregon, U.S.A.

Abstract

Abstract An automated technique for the mapping of nanocrystal phases and orientations in a transmission electron microscope is described. It is primarily based on the projected reciprocal lattice geometry that is extracted from electron diffraction spot patterns. Precession electron diffraction patterns are especially useful for this purpose. The required hardware allows for a scanning-precession movement of the primary electron beam on the crystalline sample and can be interfaced to any older or newer mid-voltage transmission electron microscope (TEM). Experimentally obtained crystal phase and orientation maps are shown for a variety of samples. Comprehensive commercial and open-access crystallographic databases may be used in support of the nanocrystal phase identification process and are briefly mentioned.

Publisher

Walter de Gruyter GmbH

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science

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