Low voltage imaging, X-ray microanalysis and X-ray mapping has become very important for the investigation of nanomaterials and their surfaces. This is especially true for low voltage imaging of non-conductive samples and beam sensitive samples. Operating the SEM at lower accelerating voltage allows for greater surface sensitivity, the ability to minimize charging effects, nanometre scale lateral X-ray spatial resolution and nanoscale X-ray depth sensitivity. Determining the correct accelerating voltage for imaging in a SEM is dependent on the instrument's operating performance at low voltage, the material being viewed, and other factors that limit effectiveness of low voltage microanalysis, which will be discussed in this paper
Low voltage FESEM (i.e., operated at several hundred volts to 5 kV) which offers advantages in surfa...
Development of new types of materials such as 2D crystals (graphene, MoS2, WS2, h-BN, etc.) requires...
Providing a comprehensive introduction to the capabilities and use of scanning electron microscopes ...
This paper addresses some of the principles underpinning chemical microanalysis of bulk specimens in...
Low voltage x-ray microanalysis, defined as being performed with an incident beam energy 5 keV, can ...
The scanning electron microscope (SEM) usually operates with a beam voltage, V0, in the range of 10-...
Low voltage field emission SEM (i.e., operated at several hundred volts to 5 kV), offering advantage...
In recent years, there have been a series of advancements in electron beam instru-ments and x-ray de...
The technology of semiconductor devices microfabrication becomes presently the main consumer of imag...
The use of lower energy (0.5 to 10 keV) electron beams in the scanning electron microscope (LVSEM) p...
The use of lower energy (0.5 to 10 keV) electron beams in the scanning electron microscope (LVSEM) p...
The main aspects of the SEM performed in the low energy (below 5 keV) and very low energy (below 50 ...
The use of electron probe microanalysis (EPMA) at low voltage allows improvements in the lateral res...
Nanomaterials used for the protection against COVID 19 were tested by a special method developed at ...
The scanning electron microscope (SEM) can be used to study and characterize a wide variety of mater...
Low voltage FESEM (i.e., operated at several hundred volts to 5 kV) which offers advantages in surfa...
Development of new types of materials such as 2D crystals (graphene, MoS2, WS2, h-BN, etc.) requires...
Providing a comprehensive introduction to the capabilities and use of scanning electron microscopes ...
This paper addresses some of the principles underpinning chemical microanalysis of bulk specimens in...
Low voltage x-ray microanalysis, defined as being performed with an incident beam energy 5 keV, can ...
The scanning electron microscope (SEM) usually operates with a beam voltage, V0, in the range of 10-...
Low voltage field emission SEM (i.e., operated at several hundred volts to 5 kV), offering advantage...
In recent years, there have been a series of advancements in electron beam instru-ments and x-ray de...
The technology of semiconductor devices microfabrication becomes presently the main consumer of imag...
The use of lower energy (0.5 to 10 keV) electron beams in the scanning electron microscope (LVSEM) p...
The use of lower energy (0.5 to 10 keV) electron beams in the scanning electron microscope (LVSEM) p...
The main aspects of the SEM performed in the low energy (below 5 keV) and very low energy (below 50 ...
The use of electron probe microanalysis (EPMA) at low voltage allows improvements in the lateral res...
Nanomaterials used for the protection against COVID 19 were tested by a special method developed at ...
The scanning electron microscope (SEM) can be used to study and characterize a wide variety of mater...
Low voltage FESEM (i.e., operated at several hundred volts to 5 kV) which offers advantages in surfa...
Development of new types of materials such as 2D crystals (graphene, MoS2, WS2, h-BN, etc.) requires...
Providing a comprehensive introduction to the capabilities and use of scanning electron microscopes ...