Anomalous proton spin‐lattice relaxation in organic compounds containing methyl groups (original) (raw)

Solid state proton spin–lattice relaxation in four structurally related organic molecules

Matty Lau

Chemical Physics, 2003

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Evaluation of 'H Nuclear Magnetic Resonance Spin-Lattice Relaxation Times Facilitated by Analogous 13C Studies, Illustrated by Studies of 1,3,5-Trimethylbenzene

Eneas Valdivieso

Journal of the Chemical Society, Faraday Trans, 1983

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Protons Relaxation and Temperature Dependence Due To Tunneling Methyl Group

IJERA Journal

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Dipole-dipole spin relaxation in solids The unrestricted hopping model and the methyl proton-non-methyl proton interaction

alfonso albano

Physica B-condensed Matter, 1993

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AN ASSESSMENT OF THE USE OF PROTON-'3C SATELLITE AND PROTON-'2C RELAXATION STUDIES FOR THE ISOLATION OF INTRA-AND INTERMOLECULAR CONTRIBUTIONS TO T, FOR ORGANIC MOLECULES

Eneas Valdivieso

Tetrahedron, 1983

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Spin-lattice relaxation study of the methyl proton dynamics in solid 9,10-dimethyltriptycene (DMT)

Michał Bielejewski

Solid State Nuclear Magnetic Resonance, 2009

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Methyl Dynamics in Proteins from NMR Slowly Relaxing Local Structure Spin Relaxation Analysis: A New Perspective

Eva Meirovitch

Journal of Physical Chemistry B, 2006

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Special Features of the Transverse Relaxation Time Distributions of NMR-Protons for Different Measurement Methods

Ivan Mershiev

Russian Physics Journal, 2018

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Determination of the antisymmetric part of the chemical shift anisotropy tensor via spin relaxation in nuclear magnetic resonance

Luminita Duma

The Journal of Chemical Physics, 2010

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BRIEF COMMUNICATIONS SPECIAL FEATURES OF THE TRANSVERSE RELAXATION TIME DISTRIBUTIONS OF NMR-PROTONS FOR DIFFERENT MEASUREMENT METHODS

Artyom Astashenok, I. Mershiev

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Spin-lattice relaxation by translational diffusion. Correlation times from off-resonance T1ϱ measurements in glycerol and camphene

Peter Bendel

Journal of Magnetic Resonance (1969), 1981

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Cross relaxation and spin diffusion effects on the proton NMR of biopolymers in H2O

D. Malinowski

FEBS Letters, 1978

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Internal motion in 1-methylnaphthalene. A variable temperature NMR study using 13C and 2H spin—lattice relaxation time measurements

Jozef Kowalewski

Chemical Physics, 1981

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NMR relaxation under spin-locking conditions

Renate Auer

2010

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Rotational tunneling of methyl groups in pentamethylbenzene studied by NMR relaxation resonance

Barbara Gabrys

Chemical Physics Letters, 1981

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Accounting for the temperature dependence of 13C spin–lattice relaxation of methyl groups in the glycyl–alanyl-leucine model system under MAS with spin diffusion

Kurt Zilm

Journal of Biomolecular NMR

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Proton NMR relaxation studies of solid L-alaninamide

yl wang

Chemical Physics Letters, 1997

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Cross polarization and magic angle sample spinning NMR spectra of model organic compounds. 2. Molecules of low or remote protonation

Ronald J Pugmire, Kurt Zilm

Journal of The American Chemical Society - J AM CHEM SOC, 1983

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Nuclear magnetic resonance spectroscopy: reinvestigation of carbon-13 spin-lattice relaxation time measurements of amino acids

Devens Gust

Proceedings of the National Academy of Sciences, 1975

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13C spin-lattice relaxation times of [1−13C]-enriched carbohydrates

Anthony Serianni

Journal of Magnetic Resonance (1969), 1982

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High resolution NMR study of T1 magnetic relaxation dispersion. III. Influence of spin 1∕2 hetero-nuclei on spin relaxation and polarization transfer among strongly coupled protons

Alexandra Yurkovskaya

The Journal of Chemical Physics, 2012

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New Methylene Specific Experiments for the Measurement of Scalar Spin–Spin Coupling Constants between Protons Attached to13C

T. Carlomagno

Journal of Magnetic Resonance, 1998

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Cross-correlation effects in the longitudinal relaxation of heteronuclear spin systems

Jozef Kowalewski

Chemical Physics Letters, 1992

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First-Principles Molecular Dynamics Evaluation of Thermal Effects on the NMR1JLi,C Spin–Spin Coupling

Catherine Fressigné, Jacques Maddaluno, Olivier Parisel

Chemistry - A European Journal, 2007

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Spatial aspects of homonuclear, proton NMR cross-relaxation. 1. The effects of molecular shape and internal motion

Anthony Duben, w Hutt

Journal of the American Chemical …, 1990

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2 H–13 C HETCOR MAS NMR for indirect detection of 2 H quadrupole patterns and spin–lattice relaxation rates

Jeff Yarger

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Measurement of solute proton spin-lattice relaxation times in water using the 1,3,3,1 sequence

Richard L Coulson

Magnetic Resonance in Medicine, 1986

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A corresponding-states correlation of spin relaxation in normal alkanes

Waylon House

Physica A: Statistical Mechanics and its Applications, 1989

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Proton Relaxometry of Long-Lived Spin Order

Alexandra Yurkovskaya

ChemPhysChem, 2019

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A 13C spin-lattice relaxation study of solvent effects on the rotational dynamics of methyl glucosides

Photis Dais

Carbohydrate Research, 1989

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