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Stephen Wimperis
Stephen Wimperis
Professor of Chemistry, Lancaster University
Verified email at lancaster.ac.uk - Homepage
Title
Cited by
Cited by
Year
Multiple‐quantum NMR spectroscopy of S=3/2 spins in isotropic phase: A new probe for multiexponential relaxation
G Jaccard, S Wimperis, G Bodenhausen
The Journal of chemical physics 85 (11), 6282-6293, 1986
4311986
Broadband, narrowband, and passband composite pulses for use in advanced NMR experiments
S Wimperis
Journal of Magnetic Resonance, Series A 109 (2), 221-231, 1994
3521994
Two-dimensional multiple-quantum MAS NMR of quadrupolar nuclei: a comparison of methods
SP Brown, S Wimperis
Journal of Magnetic Resonance 128 (1), 42-61, 1997
2361997
NMR: The toolkit: How pulse sequences work
PJ Hore, JA Jones, S Wimperis
Oxford University Press, USA, 2015
1962015
High-resolution NMR of quadrupolar nuclei in solids: the satellite-transition magic angle spinning (STMAS) experiment
SE Ashbrook, S Wimperis
Progress in Nuclear Magnetic Resonance Spectroscopy 45 (1-2), 53-108, 2004
1622004
NMR of quadrupolar nuclei in solid materials
RE Wasylishen, SE Ashbrook, S Wimperis
John Wiley & Sons, 2012
1602012
Two-dimensional MAS multiple-quantum NMR of quadrupolar nuclei. Removal of inhomogeneous second-order broadening
SP Brown, SJ Heyes, S Wimperis
Journal of Magnetic Resonance, Series A 2 (119), 280-284, 1996
1601996
Two-dimensional multiple-quantum MAS NMR of quadrupolar nuclei. Acquisition of the whole echo
SP Brown, S Wimperis
Journal of Magnetic Resonance 124 (1), 279-285, 1997
1481997
Silica-supported imine palladacycles—recyclable catalysts for the Suzuki reaction?
RB Bedford, CSJ Cazin, MB Hursthouse, ME Light, KJ Pike, S Wimperis
Journal of Organometallic Chemistry 633 (1-2), 173-181, 2001
1452001
Band-selective pulses without phase distortion. A simulated annealing approach
H Geen, S Wimperis, R Freeman
Journal of Magnetic Resonance (1969) 85 (3), 620-627, 1989
1381989
Broadband and narrowband composite excitation sequences
S Wimperis
Journal of Magnetic Resonance (1969) 86 (1), 46-59, 1990
1251990
An excitation sequence which discriminates between direct and long-range CH coupling
S Wimperis, R Freeman
Journal of Magnetic Resonance (1969) 58 (2), 348-353, 1984
1171984
17O and 29Si NMR parameters of MgSiO3 phases from high-resolution solid-state NMR spectroscopy and first-principles calculations
SE Ashbrook, AJ Berry, DJ Frost, A Gregorovic, CJ Pickard, JE Readman, ...
Journal of the American Chemical Society 129 (43), 13213-13224, 2007
1132007
Relaxation-allowed cross-peaks in two-dimensional NMR correlation spectroscopy
S Wimperis, G Bodenhausen
Molecular Physics 66 (5), 897-919, 1989
1131989
Multiple-quantum MAS NMR of quadrupolar nuclei. Do five-, seven-and nine-quantum experiments yield higher resolution than the three-quantum experiment?
KJ Pike, RP Malde, SE Ashbrook, J McManus, S Wimperis
Solid State Nuclear Magnetic Resonance 16 (3), 203-215, 2000
1092000
Long-range carbon-proton coupling constants
C Bauer, R Freeman, S Wimperis
Journal of Magnetic Resonance (1969) 58 (3), 526-532, 1984
1091984
Structure and NMR assignment in calcined and as-synthesized forms of AlPO-14: a combined study by first-principles calculations and high-resolution 27 Al–31 P MAS NMR correlation
SE Ashbrook, M Cutajar, CJ Pickard, RI Walton, S Wimperis
Physical Chemistry Chemical Physics 10 (37), 5754-5764, 2008
1052008
High-Resolution 19F MAS NMR Spectroscopy: Structural Disorder and Unusual J Couplings in a Fluorinated Hydroxy-Silicate
JM Griffin, JR Yates, AJ Berry, S Wimperis, SE Ashbrook
Journal of the American Chemical Society 132 (44), 15651-15660, 2010
992010
Motional broadening: an important distinction between multiple-quantum and satellite-transition MAS NMR of quadrupolar nuclei
SE Ashbrook, S Antonijevic, AJ Berry, S Wimperis
Chemical physics letters 364 (5-6), 634-642, 2002
882002
Satellite-transition MAS NMR of spin I= 3/2, 5/2, 7/2, and 9/2 nuclei: sensitivity, resolution, and practical implementation
SE Ashbrook, S Wimperis
Journal of Magnetic Resonance 156 (2), 269-281, 2002
872002
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