In this paper, we apply electron tomography (ET) to the study of the three-dimensional (3D) morphology of iron oxide nanoparticles (NPs) with reactive concave surfaces. The ability to determine quantitatively the volume and shape of the NP concavity is essential for understanding the key-lock mechanism responsible for the destabilization of gold nanocrystals within the iron oxide NP concavity. We show that quantitative ET is enhanced greatly by the application of compressed sensing (CS) techniques to the tomographic reconstruction. High-fidelity tomograms using a new CS-ET algorithm reveal with clarity the concavities of the particle and enable 3D nanometrology studies to be undertaken with confidence. In addition, the robust performance of...
With electron tomography, we can reconstruct a threedimensional(3D) volume of a specimen from a seri...
A novel procedure to optimize the 3D morphological characterization of nanomaterials by means of hig...
Electron tomography is an invaluable method for 3D cellular imaging. The technique is, however, limi...
In this paper, we apply electron tomography (ET) to the study of the three-dimensional (3D) morpholo...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
The activity, selectivity and stability of solid catalysts depend critically on the details of their...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
This work focus on the efforts made to obtain three-dimensional local information at atomic resoluti...
Electron tomography is a powerful technique for the 3D characterization of the morphology of nanostr...
The physicochemical properties used in numerous advanced nanostructured devices are directly control...
Nanotechnology has revolutionised humanity's capability in building microscopic systems by manipulat...
Electron tomography is widely employed for the 3D morphological characterization at the nanoscale. I...
A three-dimensional (3D) study of multiphase nanostructures by chemically selective electron tomogra...
With electron tomography, we can reconstruct a threedimensional(3D) volume of a specimen from a seri...
A novel procedure to optimize the 3D morphological characterization of nanomaterials by means of hig...
Electron tomography is an invaluable method for 3D cellular imaging. The technique is, however, limi...
In this paper, we apply electron tomography (ET) to the study of the three-dimensional (3D) morpholo...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
Transmission electron microscopy is a powerful imaging tool that has found broad application in mate...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
The activity, selectivity and stability of solid catalysts depend critically on the details of their...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
This work focus on the efforts made to obtain three-dimensional local information at atomic resoluti...
Electron tomography is a powerful technique for the 3D characterization of the morphology of nanostr...
The physicochemical properties used in numerous advanced nanostructured devices are directly control...
Nanotechnology has revolutionised humanity's capability in building microscopic systems by manipulat...
Electron tomography is widely employed for the 3D morphological characterization at the nanoscale. I...
A three-dimensional (3D) study of multiphase nanostructures by chemically selective electron tomogra...
With electron tomography, we can reconstruct a threedimensional(3D) volume of a specimen from a seri...
A novel procedure to optimize the 3D morphological characterization of nanomaterials by means of hig...
Electron tomography is an invaluable method for 3D cellular imaging. The technique is, however, limi...