3D electron diffraction (3D ED), also known as micro-crystal electron diffraction (MicroED), is a rapid, accurate, and robust method for structure determination of submicron-sized crystals. 3D ED has mainly been applied in material science until 2013, when MicroED was developed for studying macromolecular crystals. MicroED was considered as a cryo-electron microscopy method, as MicroED data collection is usually carried out in cryogenic conditions. As a result, some researchers may consider that 3D ED/MicroED data collection on crystals of small organic molecules can only be performed in cryogenic conditions. In this work, we determined the structure for sucrose and azobenzene tetracarboxylic acid (H4ABTC). The structure of H4ABTC is the fi...
Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority...
Knowing the atomic crystal structures of ordered porous solids is essential in understanding their b...
The crystal structure determines the physical properties of a material. The structure can be analyse...
3D electron diffraction (3D ED), also known as micro-crystal electron diffraction (MicroED), is a ra...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
Electron crystallography makes structure elucidation feasible when only nanometre-sized three-dimens...
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...
It is now possible to routinely determine atomic resolution structures by electron cryo-microscopy (...
Structure elucidation is fundamental to understanding the chemical and physical properties of a mate...
Covering: 2013 to 2020The electron cryo-microscopy (cryo-EM) method Microcrystal Electron Diffractio...
This dissertation describes the application and development of electron crystallography in the realm...
Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority...
Knowing the atomic crystal structures of ordered porous solids is essential in understanding their b...
The crystal structure determines the physical properties of a material. The structure can be analyse...
3D electron diffraction (3D ED), also known as micro-crystal electron diffraction (MicroED), is a ra...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
In the many scientific endeavors that are driven by organic chemistry, unambiguous identification of...
Electron crystallography makes structure elucidation feasible when only nanometre-sized three-dimens...
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...
It is now possible to routinely determine atomic resolution structures by electron cryo-microscopy (...
Structure elucidation is fundamental to understanding the chemical and physical properties of a mate...
Covering: 2013 to 2020The electron cryo-microscopy (cryo-EM) method Microcrystal Electron Diffractio...
This dissertation describes the application and development of electron crystallography in the realm...
Chemists of all fields currently publish about 50 000 crystal structures per year, the vast majority...
Knowing the atomic crystal structures of ordered porous solids is essential in understanding their b...
The crystal structure determines the physical properties of a material. The structure can be analyse...