
Publications
Export 160 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is M [Clear All Filters]
Xenon NMR as a probe for microporous and mesoporous solids, polymers, liquid crystals, solutions, flames, proteins, imaging. Actualite Chimique. :16-34.
PDF
.
2005. 
Zero- to low-field MRI with averaging of concomitant gradient fields. Proceedings of the National Academy of Sciences of the United States of America. 102(6):1840-1842.
PDF
.
2005. 
Advances in ex-situ Nuclear Magnetic Resonance. Comptes Rendus Physique. 5(3):337-347.
PDF
.
2004. 
High-resolution NMR of static samples by rotation of the magnetic field. Journal of Magnetic Resonance. 169(1):13-18.
PDF
.
2004. 
High-resolution NMR of static samples by rotation of the magnetic field. Journal of Magnetic Resonance. 169(1):13-18.
PDF
.
2004. 
Isotropic-liquid crystalline phase diagram of a CdSe nanorod solution. Journal of Chemical Physics. 120(3):1149-1152.
PDF
.
2004. 
Microtesla MRI with a superconducting quantum interference device. Proceedings of the National Academy of Sciences of the United States of America. 101(21):7857-7861.
PDF
.
2004. 
NMR studies of C-13-iodomethane: Different behavior in thermotropic and lyotropic liquid crystals. Journal of Physical Chemistry A. 108(33):6809-6813.
PDF
.
2004. 
"Shim pulses" for NMR spectroscopy and imaging. Proceedings of the National Academy of Sciences of the United States of America. 101(51):17576-17581.
PDF
.
2004. 
"Shim pulses" for NMR spectroscopy and imaging. Proceedings of the National Academy of Sciences of the United States of America. 101(51):17576-17581.
PDF
.
2004. 
SQUID-detected liquid state NMR in microtesla fields. Journal of Physical Chemistry A. 108(6):957-963.
PDF
.
2004. 
SQUID-detected liquid state NMR in microtesla fields. Journal of Physical Chemistry A. 108(6):957-963.
PDF
.
2004. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
PDF
.
2004. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
PDF
.
2004. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
PDF
.
2004. 
SQUID-detected magnetic resonance imaging in microtesla magnetic fields. Journal of Low Temperature Physics. 135(5-6):793-821.
PDF
.
2004. 
Three-dimensional phase-encoded chemical shift MRI in the presence of inhomogeneous fields. Proceedings of the National Academy of Sciences of the United States of America. 101(24):8845-8847.
PDF
.
2004. 
Variable angle spinning (VAS) NMR study of solvent effects in liquid crystalline solutions of C-13-iodomethane. Chemical Physics Letters. 399(1-3):196-199.
PDF
.
2004. 
Amplification of xenon NMR and MRI by remote detection. Proceedings of the National Academy of Sciences of the United States of America. 100(16):9122-9127.
PDF
.
2003. 
Broadband phase modulation by adiabatic pulses. Journal of Magnetic Resonance. 164(1):177-181.
PDF
.
2003. 
High-resolution NMR correlation spectra of disordered solids. Journal of the American Chemical Society. 125(14):4376-4380.
PDF
.
2003. 
High-resolution NMR of anisotropic samples with spinning away from the magic angle. Chemical Physics Letters. 377(3-4):333-339.
PDF
.
2003. 
High-resolution NMR of anisotropic samples with spinning away from the magic angle. Chemical Physics Letters. 377(3-4):333-339.
PDF
.
2003. 
Inclusion complexes oriented in thermotropic liquid-crystalline solvents studied with carbon-13 NMR. Journal of Physical Chemistry B. 107(46):12558-12561.
PDF
.
2003. 
Using switched angle spinning to simplify NMR spectra of strongly oriented samples. Journal of the American Chemical Society. 125(26):7998-8006.
PDF
.
2003. 