Nanoparticle assemblies can be investigated in 3 dimensions using electron tomography. However, it is not straightforward to obtain quantitative information such as the number of particles or their relative position. This becomes particularly difficult when the number of particles increases. We propose a novel approach in which prior information on the shape of the individual particles is exploited. It improves the quality of the reconstruction of these complex assemblies significantly. Moreover, this quantitative Sparse Sphere Reconstruction approach yields directly the number of particles and their position as an output of the reconstruction technique, enabling a detailed 3D analysis of assemblies with as many as 10 000 particles. The app...
In order to fully exploit structure-property relations of nanomaterials, three-dimensional (3D) char...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Characterizing the morphometric parameters of noble metal nanoparticles for sensing and catalysis i...
Nanoparticle assemblies can be investigated in 3 dimensions using electron tomography. However, it i...
3D characterization of assemblies of nanoparticles is of great importance to determine their structu...
3D characterization of assemblies of nanoparticles is of great importance to determine their structu...
Nanoparticle assemblies have attracted enormous scientific interest during the last years, due to th...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
While electron tomography can be used to visualize objects at nanoscale, it is difficult to perform ...
International audienceIn this paper, we propose an algorithm to obtain a three‐dimensional reconstru...
This paper examines the limits of transmission electron tomography reconstruction methods for a nano...
Single-particle reconstruction can be used to perform three-dimensional (3D) imaging of homogeneous ...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
Electron microscopy (EM) represents the most powerful tool to directly characterize the structure of...
In order to fully exploit structure-property relations of nanomaterials, three-dimensional (3D) char...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Characterizing the morphometric parameters of noble metal nanoparticles for sensing and catalysis i...
Nanoparticle assemblies can be investigated in 3 dimensions using electron tomography. However, it i...
3D characterization of assemblies of nanoparticles is of great importance to determine their structu...
3D characterization of assemblies of nanoparticles is of great importance to determine their structu...
Nanoparticle assemblies have attracted enormous scientific interest during the last years, due to th...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
While electron tomography can be used to visualize objects at nanoscale, it is difficult to perform ...
International audienceIn this paper, we propose an algorithm to obtain a three‐dimensional reconstru...
This paper examines the limits of transmission electron tomography reconstruction methods for a nano...
Single-particle reconstruction can be used to perform three-dimensional (3D) imaging of homogeneous ...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
Electron microscopy (EM) represents the most powerful tool to directly characterize the structure of...
In order to fully exploit structure-property relations of nanomaterials, three-dimensional (3D) char...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Characterizing the morphometric parameters of noble metal nanoparticles for sensing and catalysis i...