Issue 3, 2010

Bright-field electron tomography of individual inorganic fullerene-like structures

Abstract

Nanotubes and fullerene-like nanoparticles of various inorganic layered compounds have been studied extensively in recent years. Their characterisation on the atomic scale has proven essential for progress in synthesis as well as for the theoretical modelling of their physical properties. We show that with electron tomography it is possible to achieve a reliable reconstruction of the 3D structure of nested WS2 or MoS2 fullerene-like and nanotube structures with sub-nanometre resolution using electron microscopes that are not aberration-corrected. Model-based simulations were used to identify imaging parameters, under which structural features such as the shell structure can be retained in the tomogram reconstructed from bright-field micrographs. The isolation of a particle out of an agglomerate for the analysis of a single structure and its interconnection with other particles is facilitated through the tomograms. The internal structure of the layers within the particle alongside the shape and content of its internal void are reconstructed. The tomographic reconstruction yields insights regarding the growth process as well as structural defects, such as non-continuous layers, which relate to the lubrication properties.

Graphical abstract: Bright-field electron tomography of individual inorganic fullerene-like structures

Supplementary files

Article information

Article type
Paper
Submitted
08 Sep 2009
Accepted
04 Nov 2009
First published
08 Dec 2009

Nanoscale, 2010,2, 423-428

Bright-field electron tomography of individual inorganic fullerene-like structures

M. Bar Sadan, S. G. Wolf and L. Houben, Nanoscale, 2010, 2, 423 DOI: 10.1039/B9NR00251K

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