Area of research
Spectroscopy · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Hyperpolarization (physics), Chemistry, Nuclear magnetic resonance, Spin isomers of hydrogen, Polarization (electrochemistry), and Magnetic field.
Enabling nondestructive observation of electrolyte composition in batteries with ultralow-field nuclear magnetic resonance
Zero- to ultralow-field nuclear magnetic resonance
Towards detection of molecular parity violation <i>via</i> chiral co-sensing: the <sup>1</sup> H/ <sup>31</sup> P model system
Application of magnetoresistive sensors to zero- and ultralow-field nuclear magnetic resonance
Spin Hyperpolarization in Modern Magnetic Resonance
Over 20% Carbon-13 Polarization of Perdeuterated Pyruvate Using Reversible Exchange with Parahydrogen and Spin-Lock Induced Crossing at 50 μT
Parahydrogen-Polarized Fumarate for Preclinical <i>in Vivo</i> Metabolic Magnetic Resonance Imaging
Enzymatic Reactions Observed with Zero- and Low-Field Nuclear Magnetic Resonance
Over 20% 13C Hyperpolarization for Pyruvate Using Deuteration and Rapid SLIC-SABRE in Mictrotesla Fields
Spin Hyperpolarization in Modern Magnetic Resonance
Relayed hyperpolarization for zero-field nuclear magnetic resonance
Direct Production of a Hyperpolarized Metabolite on a Microfluidic Chip
Zero- to Ultralow-Field Nuclear Magnetic Resonance Enhanced with Dissolution Dynamic Nuclear Polarization
Rapid hyperpolarization and purification of the metabolite fumarate in aqueous solution
Synergies between Hyperpolarized NMR and Microfluidics: A Review
Constant-adiabaticity ultralow magnetic field manipulations of parahydrogen-induced polarization: application to an AA'X spin system
Constant-adiabaticity pulse schemes for manipulating singlet order in 3-spin systems with weak magnetic non-equivalence
Optimizing the Reaction Conditions for the Formation of Fumarate via Trans-Hydrogenation
Zero- to ultralow-field nuclear magnetic resonance J-spectroscopy with commercial atomic magnetometers
Chemical Reaction Monitoring using Zero‐Field Nuclear Magnetic Resonance Enables Study of Heterogeneous Samples in Metal Containers
Singlet‐Contrast Magnetic Resonance Imaging: Unlocking Hyperpolarization with Metabolism**
<i>Geminal</i> parahydrogen-induced polarization: accumulating long-lived singlet order on methylene proton pairs
Rapid Hyperpolarization and Purification of the Metabolite Fumarate in Aqueous Solution
Polarization transfer via field sweeping in parahydrogen-enhanced nuclear magnetic resonance
Real-Time Nuclear Magnetic Resonance Detection of Fumarase Activity Using Parahydrogen-Hyperpolarized [1- <sup>13</sup> C]Fumarate
Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy