Journal ArticleDOI
Electron tomography and holography in materials science
TLDR
An overview of the techniques of electron tomography and electron holography is presented and their capabilities with the aid of case studies that span materials science and the interface between the physical sciences and the life sciences are demonstrated.Abstract:
The rapid development of electron tomography, in particular the introduction of novel tomographic imaging modes, has led to the visualization and analysis of three-dimensional structural and chemical information from materials at the nanometre level. In addition, the phase information revealed in electron holograms allows electrostatic and magnetic potentials to be mapped quantitatively with high spatial resolution and, when combined with tomography, in three dimensions. Here we present an overview of the techniques of electron tomography and electron holography and demonstrate their capabilities with the aid of case studies that span materials science and the interface between the physical sciences and the life sciences.read more
Citations
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Journal ArticleDOI
3D image reconstruction of fiber systems using electron tomography.
O. M. Fakron,David P. Field +1 more
TL;DR: This method is capable of reconstructing the three-dimensional morphology of this type of lineal structure, and to obtain features such as tortuosity, contact points, and linear density that are of importance in defining the mechanical properties of these materials.
Journal ArticleDOI
Computational characterization of ordered nanostructured surfaces
TL;DR: In this article, a review of recent advances in nanomaterial surface structure characterization is reviewed including the development of new theory and image processing methods for both self-assembled and nanostructured surfaces due to increasing accessibility of imaging techniques at the nanoscale.
Journal ArticleDOI
Emergent parabolic scaling of nano-faceting crystal growth
TL;DR: In this paper, the authors show that one-dimensional convex and concave translating fronts (solitons) with constant asymptotic angles provably deviate from the expected Wulff angles in direct proportion to the degree of undercooling.
References
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