Here we review the scanning transmission electron microscopy (STEM) characterization technique and STEM imaging methods. We describe applications of STEM for studying inorganic nanoparticles, and other uses of STEM in biological and health sciences and discuss how to interpret STEM results. The STEM imaging mode has certain benefits compared with the broad-beam illumination mode; the main advantage is the collection of the information about the specimen using a high angular annular dark field (HAADF) detector, in which the images registered have different levels of contrast related to the chemical composition of the sample. Another advantage of its use in the analysis of biological samples is its contrast for thick stained sections, since H...
The process of improving and producing novel nanomaterials requires visibil-ity at the nanoscale–som...
The process of improving and producing novel nanomaterials requires visibility at the nanoscale -- s...
The early history of scanning transmission electron microscopy (STEM) is reviewed as a way to frame ...
This chapter summarises recent applications of scanning transmission electron microscope (STEM) base...
The scanning transmission electron microscope (STEM) is an invaluable tool for the characterization ...
Nanotechnology is one of the most important areas of modern science, which already affects many aspe...
Only a few methods are currently available for the measurement of sample thicknesses in Transmission...
The addition of a transmitted electron detector to a scanning electron microscope (SEM) allows the r...
This paper presents an investigation of the limitations and optimisation of energy dispersive X-ray ...
Over recent years, advances in nanotechnology have led to an increased interest towards engineering ...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
AbstractThis paper presents an investigation of the limitations and optimisation of energy dispersiv...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Scanning electron microscopy is capable to provide chemical information on specimens interesting for...
The process of improving and producing novel nanomaterials requires visibil-ity at the nanoscale–som...
The process of improving and producing novel nanomaterials requires visibility at the nanoscale -- s...
The early history of scanning transmission electron microscopy (STEM) is reviewed as a way to frame ...
This chapter summarises recent applications of scanning transmission electron microscope (STEM) base...
The scanning transmission electron microscope (STEM) is an invaluable tool for the characterization ...
Nanotechnology is one of the most important areas of modern science, which already affects many aspe...
Only a few methods are currently available for the measurement of sample thicknesses in Transmission...
The addition of a transmitted electron detector to a scanning electron microscope (SEM) allows the r...
This paper presents an investigation of the limitations and optimisation of energy dispersive X-ray ...
Over recent years, advances in nanotechnology have led to an increased interest towards engineering ...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
AbstractThis paper presents an investigation of the limitations and optimisation of energy dispersiv...
In the development of nanomaterials, their characterization is very important. Transmission Electro...
Scanning electron microscopy is capable to provide chemical information on specimens interesting for...
The process of improving and producing novel nanomaterials requires visibil-ity at the nanoscale–som...
The process of improving and producing novel nanomaterials requires visibility at the nanoscale -- s...
The early history of scanning transmission electron microscopy (STEM) is reviewed as a way to frame ...