Recent success at X-ray free-electron lasers has led to serial crystallography experiments staging a comeback at synchrotron sources as well. With crystal lifetimes typically in the millisecond range and the latest-generation detector technologies with high framing rates up to 1 kHz, fast sample exchange has become the bottleneck for such experiments. A micro-patterned chip has been developed from single-crystalline silicon, which acts as a sample holder for up to several thousand microcrystals at a very low background level. The crystals can be easily loaded onto the chip and excess mother liquor can be efficiently removed. Dehydration of the crystals is prevented by keeping them in a stream of humidified air during data collection. Furthe...
This protocol describes fabricating microfluidic devices with low X-ray background optimized for gon...
A new era of protein crystallography started when X-ray free-electron lasers (XFELs) came into opera...
International audienceMicrofluidic devices were designed to perform on micromoles of biological macr...
Recent success at X-ray free-electron lasers has led to serial crystallography experiments staging a...
Efficient and reliable sample delivery has remained one of the bottlenecks for serial crystallograph...
In the framework of this thesis, a new method for high-speed fixed-target serial crystallography exp...
Recent developments in serial crystallography at X-ray free electron lasers (XFELs) and synchrotrons...
A new chip-based crystal-mounting approach for rapid room-temperature data collection from numerous ...
Recent advances in synchrotron sources, beamline optics and detectors are driving a renaissance in r...
Protein crystallography has made the largest contribution to our knowledge of protein structure. How...
Historically, room-temperature structure determination was succeeded by cryo-crystallography to miti...
Over the past two decades, serial X-ray crystallography has enabled the structure determination of a...
International audienceDetermining optimal conditions for the production of well diffracting crystals...
The practice of serial X-ray crystallography (SX) depends on efficient, continuous delivery of hydra...
Crystallography chips are fixed-target supports consisting of a film (for example Kapton) or wafer (...
This protocol describes fabricating microfluidic devices with low X-ray background optimized for gon...
A new era of protein crystallography started when X-ray free-electron lasers (XFELs) came into opera...
International audienceMicrofluidic devices were designed to perform on micromoles of biological macr...
Recent success at X-ray free-electron lasers has led to serial crystallography experiments staging a...
Efficient and reliable sample delivery has remained one of the bottlenecks for serial crystallograph...
In the framework of this thesis, a new method for high-speed fixed-target serial crystallography exp...
Recent developments in serial crystallography at X-ray free electron lasers (XFELs) and synchrotrons...
A new chip-based crystal-mounting approach for rapid room-temperature data collection from numerous ...
Recent advances in synchrotron sources, beamline optics and detectors are driving a renaissance in r...
Protein crystallography has made the largest contribution to our knowledge of protein structure. How...
Historically, room-temperature structure determination was succeeded by cryo-crystallography to miti...
Over the past two decades, serial X-ray crystallography has enabled the structure determination of a...
International audienceDetermining optimal conditions for the production of well diffracting crystals...
The practice of serial X-ray crystallography (SX) depends on efficient, continuous delivery of hydra...
Crystallography chips are fixed-target supports consisting of a film (for example Kapton) or wafer (...
This protocol describes fabricating microfluidic devices with low X-ray background optimized for gon...
A new era of protein crystallography started when X-ray free-electron lasers (XFELs) came into opera...
International audienceMicrofluidic devices were designed to perform on micromoles of biological macr...