
Publications
Export 214 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is B [Clear All Filters]
Indirect Detection of Short-lived Hydride Intermediates of Iridium N-Heterocyclic Carbene Complexes via Chemical Exchange Saturation Transfer (CEST) Spectroscopy. The Journal of Physical Chemistry C.
.
2019. Indirect Detection of Short-lived Hydride Intermediates of Iridium N-Heterocyclic Carbene Complexes via Chemical Exchange Saturation Transfer (CEST) Spectroscopy. The Journal of Physical Chemistry C.
.
2019. SABRE: Chemical kinetics and spin dynamics of the formation of hyperpolarization. Progress in Nuclear Magnetic Resonance Spectroscopy.
.
2019. Selective decoupling and Hamiltonian engineering in dipolar spin networks. Physics Review Letters. 122(1-11)
.
2019. Zero-Field Nuclear Magnetic Resonance of Chemically Exchanging Systems. Nature Communications. 10
.
2019. Zero-Field Nuclear Magnetic Resonance of Chemically Exchanging Systems. Nature Communications. 10
.
2019. Zero-Field Nuclear Magnetic Resonance of Chemically Exchanging Systems. Nature Communications. 10
.
2019. Hyperpolarized NMR Spectroscopy: d‐DNP, PHIP, and SABRE Techniques. Chemistry - An Aisan Journal. 13(15)
.
2018. Rapid Catalyst Capture Enables Metal-Free para-Hydrogen-Based Hyperpolarized Contrast Agents. The Journal of Physical Chemistry Letters. 9:2721–2724.
.
2018. Selective Single‐Site Pd−In Hydrogenation Catalyst for Production of Enhanced Magnetic Resonance Signals using Parahydrogen. Chemistry - A European Journal. 24(11)
.
2018. Selective Single‐Site Pd−In Hydrogenation Catalyst for Production of Enhanced Magnetic Resonance Signals using Parahydrogen. Chemistry - A European Journal. 24(11)
.
2018. Selective Single‐Site Pd−In Hydrogenation Catalyst for Production of Enhanced Magnetic Resonance Signals using Parahydrogen. Chemistry - A European Journal. 24(11)
.
2018. Selective Single‐Site Pd−In Hydrogenation Catalyst for Production of Enhanced Magnetic Resonance Signals using Parahydrogen. Chemistry - A European Journal. 24(11)
.
2018. Selective Single‐Site Pd−In Hydrogenation Catalyst for Production of Enhanced Magnetic Resonance Signals using Parahydrogen. Chemistry - A European Journal. 24(11)
.
2018. 13C-Decoupled J-Coupling Spectroscopy Using Two-Dimensional Nuclear Magnetic Resonance at Zero-Field. The Journal of Physical Chemistry Letters. 8:1512-1516.
.
2017. Antisymmetric Couplings Enable Direct Observation of Chirality in Nuclear Magnetic Resonance Spectroscopy. The Journal of Physical Chemistry Letters. 8(4):710-714.
.
2017. Invited Review Article: Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic field. Review of Scientific Instruments. 88
.
2017. Invited Review Article: Instrumentation for nuclear magnetic resonance in zero and ultralow magnetic field. Review of Scientific Instruments. 88
.
2017. .
2017. .
2017. .
2017. Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy. Physical Review A. 96
.
2017. Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy. Physical Review A. 96
.
2017. Measuring molecular parity nonconservation using nuclear-magnetic-resonance spectroscopy. Physical Review A. 96
.
2017. .
2017.