Proton spin-lattice relaxation and intramolecular reorientation in solids
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference15 articles.
1. Methyl and tertiarybutyl reorientation in molecular solids
2. Nuclear spin lattice relaxation and activation energies of tunnelling methyl groups
3. The approach to classical dynamics of reorienting methyl groups
4. The rate of thermally activated methyl group rotation in solids
5. The correlation of methyl tunnelling and thermally activated reorientation: II
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1. Solid state 1H spin-lattice relaxation and isolated-molecule and cluster electronic structure calculations in organic molecular solids: The relationship between structure and methyl group and t-butyl group rotation;The Journal of Chemical Physics;2014-05-21
2. A proton spin-lattice relaxation rate study of methyl and t-butyl group reorientation in the solid state;Solid State Nuclear Magnetic Resonance;2010-07
3. Frequency Dependence of Electron Spin Relaxation of Nitroxyl Radicals in Fluid Solution;The Journal of Physical Chemistry B;2004-03-16
4. Electron spin relaxation of radicals in γ-irradiated malonic acid and methyl malonic acid;Applied Magnetic Resonance;2003-09
5. Comparison of electron spin relaxation times measured by Carr–Purcell–Meiboom–Gill and two-pulse spin-echo sequences;Journal of Magnetic Resonance;2003-09
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