Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority of which are X‐ray structures. We determined two molecular structures by employing electron rather than X‐ray diffraction. For this purpose, an EIGER hybrid pixel detector was fitted to a transmission electron microscope, yielding an electron diffractometer. The structure of a new methylene blue derivative was determined at 0.9 Å resolution from a crystal smaller than 1×2 μm2. Several thousand active pharmaceutical ingredients (APIs) are only available as submicrocrystalline powders. To illustrate the potential of electron crystallography for the pharmaceutical industry, we also determined the structure of an API from its pill. We demonstrat...
Electron crystallography makes structure elucidation feasible when only nanometre-sized three-dimens...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
3D electron diffraction has reached a stage where the structures of chemical compounds can be solved...
Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority...
3D electron diffraction allows data collection on nanocrystalline domains, which can be used as kine...
Traditional techniques for structural analysis, such as X-ray crystallography and Nuclear Magnetic R...
The emerging field of microcrystal electron diffraction (MicroED) is of great interest to industrial...
In the quantitative determination of new structures, micro-/nano-crystalline materials pose signific...
Crystallography of nanocrystals is a challenge for both organic and macromolecular structure determi...
Derzeit publizieren Chemiker aller Fachrichtungen ca. 50 000 Kristallstrukturen pro Jahr, von denen ...
The application of electron diffraction to crystallographically characterize all kinds of materials ...
3D electron diffraction can provide 3D single crystal electron diffraction data on crystal grains o...
Electron crystallography makes structure elucidation feasible when only nanometre-sized three-dimens...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
3D electron diffraction has reached a stage where the structures of chemical compounds can be solved...
Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority...
3D electron diffraction allows data collection on nanocrystalline domains, which can be used as kine...
Traditional techniques for structural analysis, such as X-ray crystallography and Nuclear Magnetic R...
The emerging field of microcrystal electron diffraction (MicroED) is of great interest to industrial...
In the quantitative determination of new structures, micro-/nano-crystalline materials pose signific...
Crystallography of nanocrystals is a challenge for both organic and macromolecular structure determi...
Derzeit publizieren Chemiker aller Fachrichtungen ca. 50 000 Kristallstrukturen pro Jahr, von denen ...
The application of electron diffraction to crystallographically characterize all kinds of materials ...
3D electron diffraction can provide 3D single crystal electron diffraction data on crystal grains o...
Electron crystallography makes structure elucidation feasible when only nanometre-sized three-dimens...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
3D electron diffraction has reached a stage where the structures of chemical compounds can be solved...