Nuclear magnetic resonance spectroscopy : a physicochemical view
Robin K. Harris
Abstract
Robin K. Harris
Abstract
1. The fundamentals. 2. Analysis of NMR spectra for isotropic solutions. 3. Relaxation and Fourier transform NMR. 4. Dipolar interaction and double resonance. 5. Chemical exchange and quadrupolar effects. 6. NMR of the solid state. 7. Special pulse sequences and two-dimensional NMR. 8. Chemical shifts and coupling constants. Appendix 1: NMR properties of the spin-1/2 nuclei. Appendix 2: The spin properties of quadrupolar nuclei. Appendix 3: Time-dependent pertubation theory and NMR transitions. Appendix 4: Tensor properties in NMR. Appendix 5: The effects of rapid sample rotation.
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1. The fundamentals. 2. Analysis of NMR spectra for isotropic solutions. 3. Relaxation and Fourier transform NMR. 4. Dipolar interaction and double resonance. 5. Chemical exchange and quadrupolar effects. 6. NMR of the solid state. 7. Special pulse sequences and two-dimensional NMR. 8. Chemical shifts and coupling constants. Appendix 1: NMR properties of the spin-1/2 nuclei. Appendix 2: The spin properties of quadrupolar nuclei. Appendix 3: Time-dependent pertubation theory and NMR transitions. Appendix 4: Tensor properties in NMR. Appendix 5: The effects of rapid sample rotation.
Key concepts: Carbon-13 NMR satellite, Nuclear magnetic resonance spectroscopy, Nuclear magnetic resonance crystallography, Chemistry, Solid-state nuclear magnetic resonance, Fluorine-19 NMR, Nuclear magnetic resonance, NMR spectra database