Area of research
Spectroscopy · Materials Chemistry
Research interest
Research interests include Chemistry, Oxygen-17, Magic angle spinning, Solid-state nuclear magnetic resonance, Dipeptide, and Nuclear magnetic resonance spectroscopy.
Pushing Limits of Ultra-wideline Solid-State NMR Spectroscopy: NMR Signatures of <sup>209</sup>Bi and <sup>127</sup>I in Metal–Organic Frameworks at Ultra-high Magnetic Fields
Mg-Ion Conduction in Antiperovskite Solid Electrolytes Revealed by <sup><b>25</b></sup>Mg Ultrahigh Field NMR and First-Principles Calculations
Superionic Conduction in K<sub>3</sub>SbS<sub>4</sub> Enabled by Cl‐Modified Anion Lattice
Cation Distribution and Anion Transport in the La<sub>3</sub>Ga<sub>5–<i>x</i></sub>Ge<sub>1+<i>x</i></sub>O<sub>14+0.5<i>x</i></sub> Langasite Structure
An unusual ionic cocrystal of ponatinib hydrochloride: characterization by single-crystal X-ray diffraction and ultra-high field NMR spectroscopy
Local Structure in Disordered Melilite Revealed by Ultrahigh Field <sup>71</sup>Ga and <sup>139</sup>La Solid‐State Nuclear Magnetic Resonance Spectroscopy
Superionic Conduction in K<sub>3</sub>SbS<sub>4</sub> Enabled by Cl‐Modified Anion Lattice
Charge-clustering induced fast ion conduction in 2LiX-GaF <sub>3</sub> : A strategy for electrolyte design
Stacking‐Fault Enhanced Oxygen Redox in Li<sub>2</sub>MnO<sub>3</sub>
Residue-Specific High-Resolution <sup>17</sup> O Solid-State Nuclear Magnetic Resonance of Peptides: Multidimensional Indirect <sup>1</sup> H Detection and Magic-Angle Spinning
Revealing Brønsted Acidic Bridging SiOHAl Groups on Amorphous Silica–Alumina by Ultrahigh Field Solid-State NMR
Labeling and Probing the Silica Surface Using Mechanochemistry and <sup>17</sup> O NMR Spectroscopy**
Curvature of the Retroviral Capsid Assembly Is Modulated by a Molecular Switch
Labeling and Probing the Silica Surface Using Mechanochemistry and 17O NMR Spectroscopy
Functional stability of water wire–carbonyl interactions in an ion channel
Direct <sup>17</sup> O Isotopic Labeling of Oxides Using Mechanochemistry
Recent Advances in Solid-State Nuclear Magnetic Resonance Techniques for Materials Research
Unveiling the Structure and Reactivity of Fatty-Acid Based (Nano)materials Thanks to Efficient and Scalable <sup>17</sup>O and <sup>18</sup>O-Isotopic Labeling Schemes
Field‐stepped ultra‐wideline NMR at up to 36 T: On the inequivalence between field and frequency stepping
Curvature of the retroviral capsid assembly is modulated by a molecular switch
High-Resolution <sup>17</sup>O NMR Spectroscopy of Structural Water
Synthesis and characterizations of highly conductive and stable electrolyte Li10P3S12I
Chemical Insights into PbSe–<i>x</i>%HgSe: High Power Factor and Improved Thermoelectric Performance by Alloying with Discordant Atoms
Exploring Applications of Covalent Organic Frameworks: Homogeneous Reticulation of Radicals for Dynamic Nuclear Polarization
Gadolinium based endohedral metallofullerene Gd<sub>2</sub>@C<sub>79</sub>N as a relaxation boosting agent for dissolution DNP at high fields
Unique Insights into the Structural and Functional Biology of Membrane Proteins from Solid State NMR Spectroscopy
NMR spectroscopy up to 35.2 T using a series-connected hybrid magnet
Lithiation and Delithiation Dynamics of Different Li Sites in Li-Rich Battery Cathodes Studied by <i>Operando</i> Nuclear Magnetic Resonance
<sup>17</sup>O MAS NMR Correlation Spectroscopy at High Magnetic Fields
Structural Model of the Tubular Assembly of the Rous Sarcoma Virus Capsid Protein