International audienceResearch on nanomaterials and nanostructured materials is burgeoning because their numerous and versatile applications contribute to solve societal needs in the domain of medicine, energy, environment and STICs. Optimizing their properties requires in-depth analysis of their structural, morphological and chemical features at the nanoscale. In a transmission electron microscope (TEM), combining tomography with electron energy loss spectroscopy and high-magnification imaging in high-angle annular dark-field mode provides access to all features of the same object. Today, TEM experiments in three dimensions are paramount to solve tough structural problems associated with nanoscale matter. This approach allowed a thorough m...
<p><b>BACKGROUND: </b>Transmission electron microscopy (TEM) remains an important ...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
A three-dimensional (3D) study of multiphase nanostructures by chemically selective electron tomogra...
International audienceResearch on nanomaterials and nanostructured materials is burgeoning because t...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Abstract: Nanomaterials are materials that have at least one dimension in the nanometer length scale...
The structural analysis serves as a bridge to link the structure of materials to their properties. R...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
The physical and chemical properties of nanophase materials rely on their crystal and surface struct...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
<p><b>BACKGROUND: </b>Transmission electron microscopy (TEM) remains an important ...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
A three-dimensional (3D) study of multiphase nanostructures by chemically selective electron tomogra...
International audienceResearch on nanomaterials and nanostructured materials is burgeoning because t...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Transmission electron microscope (TEM) has emerged as a very powerful tool for probing the structure...
Accurate characterization of nanostructured materials is one of the main limitations for the develop...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
Transmission electron microscopy (TEM) is a powerful and versatile tool for investigating nanomateri...
Abstract: Nanomaterials are materials that have at least one dimension in the nanometer length scale...
The structural analysis serves as a bridge to link the structure of materials to their properties. R...
In this chapter, recent advances in scanning/transmission electron microscopic techniques and their ...
The physical and chemical properties of nanophase materials rely on their crystal and surface struct...
This chapter examines some of the latest developments in examining nano-structured materials. It out...
<p><b>BACKGROUND: </b>Transmission electron microscopy (TEM) remains an important ...
Modern methods of in situ transmission electron microscopy (TEM) allow one to not only manipulate wi...
A three-dimensional (3D) study of multiphase nanostructures by chemically selective electron tomogra...