Area of research
Spectroscopy · Materials Chemistry
Research interest
Research interests include Chemistry, Magic angle spinning, Nuclear magnetic resonance, Microwave, Hyperfine structure, and Nuclear Overhauser effect.
Primary Transfer Step in the Light-Driven Ion Pump Bacteriorhodopsin: An Irreversible U-Turn Revealed by Dynamic Nuclear Polarization-Enhanced Magic Angle Spinning NMR
Frequency-Swept Integrated and Stretched Solid Effect Dynamic Nuclear Polarization
High-precision measurement of the electron spin g factor of trapped atomic nitrogen in the endohedral fullerene N@C60
Peptide and Protein Dynamics and Low-Temperature/DNP Magic Angle Spinning NMR
In Situ Characterization of Pharmaceutical Formulations by Dynamic Nuclear Polarization Enhanced MAS NMR
Overhauser effects in non-conducting solids at 1.2 K
Atomic Resolution Structure of Monomorphic Aβ<sub>42</sub> Amyloid Fibrils
Gd(<scp>iii</scp>) and Mn(<scp>ii</scp>) complexes for dynamic nuclear polarization: small molecular chelate polarizing agents and applications with site-directed spin labeling of proteins
Mechanisms of dynamic nuclear polarization in insulating solids
Time domain DNP with the NOVEL sequence
Overhauser effects in insulating solids
High Frequency Dynamic Nuclear Polarization
M2 Proton Channel Structural Validation from Full‐Length Protein Samples in Synthetic Bilayers and <i>E. coli</i> Membranes
Magic Angle Spinning and Oriented Sample Solid-State NMR Structural Restraints Combine for Influenza A M2 Protein Functional Insights
M2 Proton Channel Structural Validation from Full‐Length Protein Samples in Synthetic Bilayers and <i>E. coli</i> Membranes
Structural Insights for the Full Length Influenza A M2 Proton Channel in Native E. Coli Membranes