Electron diffraction methods have emerged as powerful tools for elucidating the atomic structures of a wide range of materials. Among these methods, cryo‐electron microscopy and microcrystal electron ...
Recent advances in electron microscopy and diffraction have increasingly focused on capturing dynamical processes at unprecedented temporal resolutions. Ultrafast electron microscopy and diffraction ...
MicroED can extract structural information from crystals that are one-billionth the size required for X-ray diffraction. The ED-1 system and workflow bypasses one of the main limitations of ...
Single-crystal X-ray diffraction (SC-XRD) is often referred to as the gold standard of sample characterisation, offering three-dimensional structure of both molecules and their crystalline packing, ...
Electron diffraction is a powerful analytical technique used to study the atomic structure of materials. It involves the interaction of a beam of electrons with a crystalline sample, resulting in a ...
A new technique developed by Janelia researchers allows scientists to use electron beams to determine protein structure from tiny crystals. To determine a protein's molecular structure researchers ...
For a crystal-clear view of cutting-edge science, step into Brandon Mercado’s lab in the basement of Kline Chemistry Laboratory. But there’s a new kid in town. CBIC’s Structural Science Facility now ...
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What is the Diffraction Limit? The diffraction limit is a fundamental barrier in optical microscopy that sets the minimum size of features that can be resolved using conventional light microscopes. It ...
DECTRIS SINGLA ® detector is considered a quick, hybrid-pixel electron detector used for many life science applications. The detector is a hybrid-pixel electron-counting camera with a sensitive area ...