Electron tomography is currently a versatile tool to investigate the connection between the structure and properties of nanomaterials. However, a quantitative interpretation of electron tomography results is still far from straightforward. Especially accurate quantification of pore-space is hampered by artifacts introduced in all steps of the processing chain, i.e., acquisition, reconstruction, segmentation and quantification. Furthermore, most common approaches require subjective manual user input. In this paper, the PORES algorithm “POre REconstruction and Segmentation” is introduced; it is a tailor-made, integral approach, for the reconstruction, segmentation, and quantification of porous nanomaterials. The PORES processing chain starts ...
Silicon nanomembrane technologies (NPN, pnc-Si, and others) have been used commercially as electron ...
Electron micrography (EM) is an important method for determining the three-dimensional (3D) structur...
Several porous phases have been characterized in the last years by tomographic electron diffraction....
Electron tomography is currently a versatile tool to investigate the connection between the structur...
In this contribution, we propose a protocol for analysis and accurate reconstruction of nanoporous m...
Mesoporous materials, with pore size of 2-50 nm, are gaining increasing attention in applications su...
A novel procedure to optimize the 3D morphological characterization of nanomaterials by means of hig...
Dans le domaine du raffinage, les mesures morphologiques de particules sont devenues indispensables ...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
6-pagesThis paper presents a new method for the quantification of pore size of scaffold biomaterials...
Hierarchical pore structures exhibit morphological features on several length scales, which govern i...
We present an automated focused ion beam nanotomography method for nanoporous microstructures with o...
Silicon nanomembrane technologies (NPN, pnc-Si, and others) have been used commercially as electron ...
Tomographic analysis using focused ion beam-scanning electron microscopy (FIB-SEM) provides three-di...
Tomographic analysis using focused ion beam-scanning electron microscopy (FIB-SEM) provides three-di...
Silicon nanomembrane technologies (NPN, pnc-Si, and others) have been used commercially as electron ...
Electron micrography (EM) is an important method for determining the three-dimensional (3D) structur...
Several porous phases have been characterized in the last years by tomographic electron diffraction....
Electron tomography is currently a versatile tool to investigate the connection between the structur...
In this contribution, we propose a protocol for analysis and accurate reconstruction of nanoporous m...
Mesoporous materials, with pore size of 2-50 nm, are gaining increasing attention in applications su...
A novel procedure to optimize the 3D morphological characterization of nanomaterials by means of hig...
Dans le domaine du raffinage, les mesures morphologiques de particules sont devenues indispensables ...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
6-pagesThis paper presents a new method for the quantification of pore size of scaffold biomaterials...
Hierarchical pore structures exhibit morphological features on several length scales, which govern i...
We present an automated focused ion beam nanotomography method for nanoporous microstructures with o...
Silicon nanomembrane technologies (NPN, pnc-Si, and others) have been used commercially as electron ...
Tomographic analysis using focused ion beam-scanning electron microscopy (FIB-SEM) provides three-di...
Tomographic analysis using focused ion beam-scanning electron microscopy (FIB-SEM) provides three-di...
Silicon nanomembrane technologies (NPN, pnc-Si, and others) have been used commercially as electron ...
Electron micrography (EM) is an important method for determining the three-dimensional (3D) structur...
Several porous phases have been characterized in the last years by tomographic electron diffraction....