Dissolution dynamic nuclear polarization (d-DNP) denotes a method to enhance signals in nuclear magnetic resonance (NMR) spectroscopy by hyperpolarization of nuclear spins at cryogenic temperature in the solid state prior to a rapid dissolution, transfer of a sample to a conventional NMR spectrometer, and detection at ambient temperatures in the liquid state. The purpose of this chapter is to review the general methodology behind d-DNP, and instrumentational aspects going from basic tasks, such as sample preparation, over operational aspects, such as the use of crosspolarization techniques, magnetic tunnels, and the removal of polarization agents, to future perspectives, such as the long-distance transport of hyperpolarized substrates.
Dipolar Order Mediated 1H -> 13C Cross-Polarization for Dissolution-Dynamic Nuclear Polarization #DNPNMR
From The DNP-NMR Blog:
Dipolar Order Mediated 1H -> 13C Cross-Polarization for Dissolution-Dynamic Nuclear Polarization #DNPNMR
Elliott, Stuart J., Samuel F. Cousin, Quentin Chappuis, Olivier Cala, Morgan Ceillier, Aurélien Bornet, and Sami Jannin. “Dipolar Order Mediated 1H -> 13C Cross-Polarization for Dissolution-Dynamic Nuclear Polarization.” Preprint. Hyperpolarization/Pulse-sequence development, February 20, 2020.
https://doi.org/10.5194/mr-2020-4
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04-29-2020 04:16 PM
NMR Spectroscopy Unchained: Attaining the Highest Signal Enhancements in Dissolution Dynamic Nuclear Polarization #DNPNMR
From The DNP-NMR Blog:
NMR Spectroscopy Unchained: Attaining the Highest Signal Enhancements in Dissolution Dynamic Nuclear Polarization #DNPNMR
Niedbalski, Peter, Andhika Kiswandhi, Christopher Parish, Qing Wang, Fatemeh Khashami, and Lloyd Lumata. “NMR Spectroscopy Unchained: Attaining the Highest Signal Enhancements in Dissolution Dynamic Nuclear Polarization.” The Journal of Physical Chemistry Letters 9, no. 18 (September 20, 2018): 5481–89.
https://doi.org/10.1021/acs.jpclett.8b01687.
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11-25-2018 06:02 AM
Instrumentation for cryogenic magic angle spinning dynamic nuclear polarization using 90L of liquid nitrogen per day #DNPNMR
From The DNP-NMR Blog:
Instrumentation for cryogenic magic angle spinning dynamic nuclear polarization using 90L of liquid nitrogen per day #DNPNMR
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Albert, B.J., et al., Instrumentation for cryogenic magic angle spinning dynamic nuclear polarization using 90L of liquid nitrogen per day. J. Magn. Reson., 2017. 283(Supplement C): p. 71-78.
https://doi.org/10.1016/j.jmr.2017.08.014
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12-20-2017 10:12 PM
Construction and 13 C hyperpolarization efficiency of a 180 GHz dissolution dynamic nuclear polarization system #DNPNMR
From The DNP-NMR Blog:
Construction and 13 C hyperpolarization efficiency of a 180 GHz dissolution dynamic nuclear polarization system #DNPNMR
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Kiswandhi, A., et al., Construction and 13 C hyperpolarization efficiency of a 180 GHz dissolution dynamic nuclear polarization system. Magn Reson Chem, 2017. 55(9): p. 828-836.
https://www.ncbi.nlm.nih.gov/pubmed/28407455
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10-14-2017 02:04 AM
Hyperpolarization of nitrogen-15 nuclei by cross polarization and dissolution dynamic nuclear polarization
From The DNP-NMR Blog:
Hyperpolarization of nitrogen-15 nuclei by cross polarization and dissolution dynamic nuclear polarization
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Milani, J., et al., Hyperpolarization of nitrogen-15 nuclei by cross polarization and dissolution dynamic nuclear polarization. Review of Scientific Instruments, 2017. 88(1): p. 015109.
http://dx.doi.org/10.1063/1.4973777
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09-04-2017 03:11 PM
Dissolution dynamic nuclear polarization–enhanced magnetic resonance spectroscopy and imaging: Chemical and biochemical reactions in nonequilibrium conditions #DNPNMR
From The DNP-NMR Blog:
Dissolution dynamic nuclear polarization–enhanced magnetic resonance spectroscopy and imaging: Chemical and biochemical reactions in nonequilibrium conditions #DNPNMR
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Lee, Y., Dissolution dynamic nuclear polarization–enhanced magnetic resonance spectroscopy and imaging: Chemical and biochemical reactions in nonequilibrium conditions. Applied Spectroscopy Reviews, 2015. 51(3): p. 210-226.
https://doi.org/10.1080/05704928.2015.1116078