The Cryo-Electron Microscopy Center supports industry, academic, government, and non-profit research institutes, providing single-particle and microcrystal electron diffraction capabilities. We offer ...
This approach bypasses time-consuming protein purification steps, thereby reducing the number of crystals (ideally to one) required compared with X-ray diffraction methods. The range of applicable ...
From paints and inks to catalysts and drug-delivery materials, many advanced technologies rely on substances dispersed in organic solvents. Yet directly observing these materials in their native ...
What is Cryo-Electron Microscopy? Cryo-electron microscopy (cryo-EM) is a powerful technique used to determine the three-dimensional structure of biological macromolecules, such as proteins and ...
Structure-based designs facilitate drug discovery, and cryogenic electron microscopy (cryo-EM) is an increasingly important tool to determine high-resolution structures of proteins and protein ...
Radiation damage remains the principal limitation in achieving higher resolution in cryo-electron microscopy (cryo-EM), despite advances in cryoprotection and low-dose imaging. Researchers have ...
Could you start by explaining your background in crystallography and how you began using the Rigaku Synergy-ED system? Fraser: I began my journey into crystallography at the University of Edinburgh in ...
Cryo-stage with single axis holder for better stability and drift performance Symmetrical constant power C-TWIN image aberrations and lens design for minimizing lens hysteresis during mode switching ...
Beam-sensitive materials can hold the answers to some of today’s most important research questions, but they can also be the hardest to analyze. Polymers, metal-organic frameworks (MOFs), covalent ...
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