Publications
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Long-lived Heteronuclear Spin-Singlet States in Liquids at a Zero Magnetic Field. Physical Review Letters. 112(7):077601. PDF
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2014. Molecular Sensing Using Hyperpolarized Xenon NMR Spectroscopy. Israel Journal of Chemistry. 54:104-112. PDF
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2014. Optical hyperpolarization and NMR detection of 129Xe on a microfluidic chip. Nature Communication. 5:3908. PDF
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2014. Optically detected cross-relaxation spectroscopy of electron spins in diamonds. Nature Communication. 5:4135. PDF
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2014. Optically-detected nuclear quadrupolar interaction of 14N in nitrogen-vacancy centers in diamond. Physical Review B. 89(20):205202. PDF
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2014. Ultra-Low-Field NMR Relaxation and Diffusion Measurements Using an Optical Magnetometer (Cover Article). Angewandte Chemie. 53(37):1-6. PDF
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2014. Decoherence-protected transitions of nitrogen-vacancy centers in 99% 13C-enriched diamond. arXiv:1506.05484. PDF
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2015. Measurement of untruncated nuclear spin interactions via zero-to ultralow-field nuclear magnetic resonance. Physical Review B.
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2015. Room temperature in situ nuclear spin hyperpolarization from optically pumped nitrogen vacancy centers in diamond. Nature Communications. PDF
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2015. Zero-field nuclear magnetic resonance spectroscopy of viscous liquids. Journal of Magnetic Resonance. 250:1-6. PDF
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2015. 129Xe NMR Relaxation-Based Macromolecular Sensing. JACS Communication. 138(31)
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2016. Nondisruptive Dissolution of Hyperpolarized 129Xe into Viscous Aqueous and Organic Liquid Crystalline Environments. Angewandte Chemie .
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2016. Nuclear magnetic resonance at millitesla fields using a zero-field spectrometer. Journal of Magnetic Resonance. 270:35-39.
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2016. Rotaxane probes for protease detection by 129Xe hyperCEST NMR. Chemical Communications.
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2016. Rotaxane-mediated suppression and activation of cucurbit[6]uril for molecular detection by 129Xe hyperCEST NMR. ChemComm. PDF
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2016. Targeted Molecular Imaging of Cancer Cells using MS2-Based 129Xe NMR. Bioconjugate Chemistry. 27(8)
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2016. Transition-Selective Pulses in Zero-Field Nuclear Magnetic Resonance. The Journal of Physical Chemistry. 120(25)
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2016. 13C-Decoupled J-Coupling Spectroscopy Using Two-Dimensional Nuclear Magnetic Resonance at Zero-Field. The Journal of Physical Chemistry Letters. 8:1512-1516.
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2017. Antisymmetric Couplings Enable Direct Observation of Chirality in Nuclear Magnetic Resonance Spectroscopy. The Journal of Physical Chemistry Letters. 8(4):710-714.
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2017. Distance-dependent magnetic resonance tuning as a versatile MRI sensing platform for biological targets. Nature Materials. 16(5):537-542.
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2017. Invited Review Article: Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic field. Review of Scientific Instruments. 88
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2017. Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy. Physical Review A. 96
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