The highly energetic electrons in a transmission electron microscope (TEM) can alter or even completely destroy the structure of samples before sufficient information can be obtained. This is especially problematic in the case of zeolites, organic and biological materials. As this effect depends on both the electron beam and the sample and can involve multiple damage pathways, its study remained difficult and is plagued with irreproducibility issues, circumstantial evidence, rumors, and a general lack of solid data. Here we take on the experimental challenge to investigate the role of the STEM scan pattern on the damage behavior of a commercially available zeolite sample with the clear aim to make our observations as reproducible as possibl...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
The chemical analysis on the atomic scale in a scanning transmission electron microscope bears a num...
In the pharmaceutical industry, it is important to determine the effects of crystallisation and proc...
A scanning transmission electron microscope (STEM) is useful device combining features of scanning a...
We review the various ways in which an electron beam can adversely affect an organic or inorganic sa...
We review the use of transmission electron microscopy (TEM) and associated techniques for the analys...
Beam damage caused during acquisition of the highest resolution images is the current limitation in ...
Transmission electron microscopy is undoubtedly an indispensable tool for materials characterization...
The transmission electron microscope (TEM) is a powerful tool for characterizing the nanoscale and a...
Abstract Scanning transmission electron microscopy (STEM) has advanced rapidly in the last decade th...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
While aberration correction for scanning transmission electron microscopes (STEMs) dramatically incr...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
The chemical analysis on the atomic scale in a scanning transmission electron microscope bears a num...
In the pharmaceutical industry, it is important to determine the effects of crystallisation and proc...
A scanning transmission electron microscope (STEM) is useful device combining features of scanning a...
We review the various ways in which an electron beam can adversely affect an organic or inorganic sa...
We review the use of transmission electron microscopy (TEM) and associated techniques for the analys...
Beam damage caused during acquisition of the highest resolution images is the current limitation in ...
Transmission electron microscopy is undoubtedly an indispensable tool for materials characterization...
The transmission electron microscope (TEM) is a powerful tool for characterizing the nanoscale and a...
Abstract Scanning transmission electron microscopy (STEM) has advanced rapidly in the last decade th...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
While aberration correction for scanning transmission electron microscopes (STEMs) dramatically incr...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
Understanding and controlling the polymorphic form and microstructure of pharmaceutical and zeolitic...
The chemical analysis on the atomic scale in a scanning transmission electron microscope bears a num...
In the pharmaceutical industry, it is important to determine the effects of crystallisation and proc...