Area of research
Radiation · Materials Chemistry
Research interest
Research interests include Femtosecond, Physics, Materials science, Crystallography, Chemistry, and Astronomy.
Microstructure and crystal order during freezing of supercooled water drops
Femtosecond quantification of void evolution during rapid material failure
Structures of the intermediates of Kok’s photosynthetic water oxidation clock
Retinal isomerization in bacteriorhodopsin captured by a femtosecond x-ray laser
Enzyme intermediates captured “on the fly” by mix-and-inject serial crystallography
Relativistic and resonant effects in the ionization of heavy atoms by ultra-intense hard X-rays
Structure of the 30S ribosomal decoding complex at ambient temperature
Structure of the 30S ribosomal decoding complex at ambient temperature
Drop-on-demand sample delivery for studying biocatalysts in action at X-ray free-electron lasers
Femtosecond response of polyatomic molecules to ultra-intense hard X-rays
Experimental strategies for imaging bioparticles with femtosecond hard X-ray pulses
Flow‐aligned, single‐shot fiber diffraction using a femtosecond X‐ray free‐electron laser
Femtosecond structural dynamics drives the trans/cis isomerization in photoactive yellow protein
Structure of photosystem II and substrate binding at room temperature
MULTIWAVELENGTH STUDY OF QUIESCENT STATES OF Mrk 421 WITH UNPRECEDENTED HARD X-RAY COVERAGE PROVIDED BY NuSTAR IN 2013
THE DISTRIBUTION OF RADIOACTIVE <sup>44</sup>Ti IN CASSIOPEIA A
De novo phasing with X-ray laser reveals mosquito larvicide BinAB structure
Direct observation of ultrafast collective motions in CO myoglobin upon ligand dissociation
RAPID VARIABILITY OF BLAZAR 3C 279 DURING FLARING STATES IN 2013−2014 WITH JOINT<i>FERMI</i>-LAT,<i>NuSTAR</i>,<i>SWIFT</i>, AND GROUND-BASED MULTI-WAVELENGTH OBSERVATIONS
Concentric-flow electrokinetic injector enables serial crystallography of ribosome and photosystem II
Lipidic cubic phase injector facilitates membrane protein serial femtosecond crystallography
Time-resolved serial crystallography captures high-resolution intermediates of photoactive yellow protein
Taking snapshots of photosynthetic water oxidation using femtosecond X-ray diffraction and spectroscopy
Accurate macromolecular structures using minimal measurements from X-ray free-electron lasers
Protein crystal structure obtained at 2.9 Å resolution from injecting bacterial cells into an X-ray free-electron laser beam
THE<i>NUCLEAR SPECTROSCOPIC TELESCOPE ARRAY</i>(<i>NuSTAR</i>) HIGH-ENERGY X-RAY MISSION