Sign of JHF in CHFCl2
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- Type
- article
- Published
- 1966-01-01
- Cited by
- 73
- References
- 16
- OpenAlex
- https://openalex.org/W1974182570
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93910454
Keywords
Relaxation (psychology), Fluorine, Sign (mathematics), Chemistry, Dipole
References
- A Note on the Fluorine Resonance Shifts
- Theory of the Dependence of Nuclear Magnetic Relaxation on the Absolute Sign of Spin—Spin Coupling Constant
- Nuclear Spin Relaxation in Liquid CHFCl2
- Nuclear Relaxation Processes in Systems of Two Spins
- Effect of Anisotropic Hyperfine Interactions on Paramagnetic Relaxation in Liquids
- High-Resolution Nuclear Magnetic Resonance Spectra of Orientated Molecules
- Analysis of the Fluorine NMR Spectrum of Hexafluorobenzene in a Nematic Liquid Crystal
- Anisotropy of Chemical Shift for Some Fluorine Compounds
- Nuclear Relaxation Processes of a Nonequivalent Two‐Spin System
- Principles of magnetic resonance
- Anisotropy of the 19F Chemical Shift in Trapped CH3F Molecules
- On the Theory of Relaxation Processes
- Nuclear Magnetic Interactions in the HF Molecule
- Comments on the Signs of Proton Coupling Constants
- Fluorine N.M.R. Spectroscopy. XII. Proof of Opposite Signs for the “Direct” Carbon-13 Coupling Constants to Hydrogen and to Fluorine
- The Principles of Nuclear Magnetism
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- Indirekte Kernspinkopplung der Äthylverbindungen: SeEt2, CdEt2 und TeEt2
- Solution NMR spin relaxation methods for characterizing chemical exchange in high-molecular-weight systems.
- Some Recent Developments in NMR Approaches for Studying Liquid Molecular Dynamics and Their Biological Applications
- Studies of carbohydrate derivatives by nuclear magnetic double-resonance
- Anisotropies and Absolute Signs of the Indirect Spin–Spin Coupling Constants in 13CH3F
- Indirekte Kernspinkopplung in den Methyl‐, Silyl‐ und Hydridverbindungen der VI. Hauptgruppe
- Proton chemical shift anisotropy: detection of cross correlation with dipole-dipole interactions by double-quantum filtered two-dimensional NMR exchange spectroscopy
- Determination of the relative signs of coupling constants in some organomercuric compounds by internuclear double and triple magnetic resonance
- Chapter 4 Relaxation processes in systems of two non-identical spins
- The influence of cross correlation on multiplet patterns in nuclear overhauser effect spectra
- Nuclear magnetic relaxation in coupled spin systems
- Differential Line Broadening in the Presence of Quadrupolar-CSA Interference
- Influence of cross-relaxation on NMR spin-lattice relaxation times
- Interference effects in the relaxation of a pair of unlike spin-1/2 nuclei
- Nuclear Magnetic Relaxation Studies of (CD3O)211BH
- Spin–lattice relaxation in coupled three spin systems of the AIS type
- Anisotropic molecular reorientation measured by NMR relaxation including cross terms between dipolar and chemical shift anisotropy interactions
- A “magic-angle” sample-spinning nuclear magnetic resonance spectroscopic study of interference effects in the nuclear spin relaxation of polymers☆
- Influence of cross-correlation between dipolar and anisotropic chemical shift relaxation mechanisms upon longitudinal relaxation rates of 15N in macromolecules
- Perturbational Calculations of the Nuclear Spin—Spin Coupling Constant for the Hydrogen Fluoride Molecule
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