John W. Blanchard
Affiliations: | University of California, Berkeley, Berkeley, CA, United States |
Area:
NMR, MagnetometryGoogle:
"John Blanchard"Mean distance: 8.92
Parents
Sign in to add mentorAlexander Pines | grad student | 2010-2014 | UC Berkeley | |
(Zero and Ultra-Low-Field Nuclear Magnetic Resonance Spectroscopy Via Optical Magnetometry.) |
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Publications
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Van Dyke E, Eills J, Sheberstov K, et al. (2025) Towards detection of molecular parity violation chiral co-sensing: the H/P model system. Physical Chemistry Chemical Physics : Pccp |
Dagys L, Korzeczek MC, Parker AJ, et al. (2024) Robust parahydrogen-induced polarization at high concentrations. Science Advances. 10: eado0373 |
Picazo-Frutos R, Sheberstov KF, Blanchard JW, et al. (2024) Zero-field J-spectroscopy of quadrupolar nuclei. Nature Communications. 15: 4487 |
Eills J, Picazo-Frutos R, Bondar O, et al. (2023) Enzymatic Reactions Observed with Zero- and Low-Field Nuclear Magnetic Resonance. Analytical Chemistry. 95: 17997-18005 |
Steiner JM, Quan Y, Eichhorn TR, et al. (2023) Long-Lived, Transportable Reservoir of Nuclear Polarization Used to Strongly Enhance Solution-State NMR Signals. The Journal of Physical Chemistry. A |
Marshall A, Salhov A, Gierse M, et al. (2023) Radio-Frequency Sweeps at Microtesla Fields for Parahydrogen-Induced Polarization of Biomolecules. The Journal of Physical Chemistry Letters. 14: 2125-2132 |
Picazo-Frutos R, Stern Q, Blanchard JW, et al. (2022) Zero- to Ultralow-Field Nuclear Magnetic Resonance Enhanced with Dissolution Dynamic Nuclear Polarization. Analytical Chemistry |
Eichhorn TR, Parker AJ, Josten F, et al. (2022) Hyperpolarized Solution-State NMR Spectroscopy with Optically Polarized Crystals. Journal of the American Chemical Society. 144: 2511-2519 |
Sheberstov KF, Chuchkova L, Hu Y, et al. (2021) Photochemically Induced Dynamic Nuclear Polarization of Heteronuclear Singlet Order. The Journal of Physical Chemistry Letters. 12: 4686-4691 |
Aybas D, Adam J, Blumenthal E, et al. (2021) Search for Axionlike Dark Matter Using Solid-State Nuclear Magnetic Resonance. Physical Review Letters. 126: 141802 |