Related reference for two-pulse MQ-MAS

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Related two-pulse MQ-MAS references

Below are provided some NMR references about MQ-MAS with two-pulse sequence applied to half-integer quadrupole spins. These references contain
(1) the pulse-sequence diagram,
(2) the coherence-transfer pathways,
(3) the phase-cycling.

  1. D. Massiot, F. Fayon, M. Capron, I. King, S. Le Calvé, B. Alonso, J.-O. Durand, B. Bujoli, Z. Gan, and G. Hoatson
    Modelling one- and two-dimensional solid-state NMR spectra,
    Magn. Reson. Chem. 40, 70-76 (2002).
  2. M. Bak, J. T. Rasmussen, and N. C. Nielsen
    SIMPSON: A general simulation program for solid-state NMR spectroscopy, (1)
    J. Magn. Reson. 147, 296-330 (2000).
  3. C. Bonhomme and J. Livage
    Pictorial representation of anisotropy and macroscopic reorientations of samples in solid-state NMR: Second-order interactions,
    J. Phys. Chem. A 103, 460-477 (1999).
  4. J. McManus, R. Kemp-Harper, and S. Wimperis
    Second-order quadrupolar-dipolar broadening in two-dimensional MQMAS NMR,
    Chem. Phys. Lett. 311, 292-298 (1999).
  5. J.-P. Amoureux and C. Fernandez
    Triple, quintuple and higher order multiple quantum MAS NMR of quadrupolar nuclei,
    Solid State Nucl. Magn. Reson. 10, 211-223 (1998).
    Erratum: Solid State Nucl. Magn. Reson. 16, 339-343 (2000).
  6. L. Marinelli, A. Medek, and L. Frydman
    Composite pulse excitation schemes for MQMAS NMR of half-integer quadrupolar spins,
    J. Magn. Reson. 132, 88-95 (1998).
  7. S. Ding and C. A. McDowell
    MQ-MAS NMR spectroscopy of spin-3/2 quadrupolar spin systems using shaped pulses,
    J. Magn. Reson. 135, 61-69 (1998).
  8. S. Ding and C. A. McDowell
    Shaped pulse excitation in MQ MAS spectroscopy of half-integer quadrupole spin systems,
    Chem. Phys. Lett. 270, 81-86 (1997).
  9. P. P. Man
    Second-order quadrupole effects on Hahn echoes in fast-rotating solids at the magic angle (PDF article, 320 Kb),
    Phys. Rev. B 55, 8406-8424 (1997).
  10. L. Marinelli and L. Frydman
    On the origin of spinning sidebands in MQMAS NMR,
    Chem. Phys. Lett. 275, 188-198 (1997).
  11. D. Massiot
    Sensitivity and lineshape improvements of MQ-MAS by rotor-synchronized data acquisition,
    J. Magn. Reson. A 122, 240-244 (1996).
  12. J.-P. Amoureux, C. Fernandez, and L. Frydman
    Optimized MQ MAS NMR experiments on half-integer quadrupoles,
    Chem. Phys. Lett. 259, 347-355 (1996).
  13. A. Samoson
    2D isotropic NMR of quadrupole nuclei in solids,
    J. Magn. Reson. A 121, 209-211 (1996).
  14. C. Jäger, K. Herzog, B. Thomas, M. Feike, and G. Kunath-Fandrei
    Detection of multiple boron sites in glasses by 11B satellite transition nuclear magnetic resonance spectroscopy, (1)(2)
    Solid State Nucl. Magn. Reson. 5, 51-61 (1995).
  15. A. Samoson
    Multiquantum NMR of quadrupole nuclei with strong pulses, (1)(3)
    Chem. Phys. Lett. 247, 203-206 (1995).
  16. J.-P. Amoureux
    High-resolution solid-state NMR for spin 3/2 and 9/2: the multi-quantum transition method,
    Solid State Nucl. Magn. Reson. 2, 83-88 (1993).

Solid-state NMR bibliography for:

Aluminum-27
Antimony-121/123
Arsenic-75
Barium-135/137
Beryllium-9
Bismuth-209
Boron-11
Bromine-79/81
Calcium-43
Cesium-133
Chlorine-35/37
Chromium-53
Cobalt-59
Copper-63/65
Deuterium-2
Gallium-69/71
Germanium-73
Gold-197
Hafnium-177/179
Indium-113/115
Iodine-127
Iridium-191/193
Krypton-83
Lanthanum-139
Lithium-7
Magnesium-25
Manganese-55
Mercury-201
Molybdenum-95/97
Neon-21
Nickel-61
Niobium-93
Nitrogen-14
Osmium-189
Oxygen-17
Palladium-105
Potassium-39/41
Rhenium-185/187
Rubidium-85/87
Ruthenium-99/101
Scandium-45
Sodium-23
Strontium-87
Sulfur-33
Tantalum-181
Titanium-47/49
Vanadium-51
Xenon-131
Zinc-67
Zirconium-91
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