Principles of nuclear magnetic resonance in one and two dimensions
Explore this paper's citation graph
- Type
- article
- Published
- 1987-01-01
- Cited by
- 5,268
- References
- 0
- OpenAlex
- https://openalex.org/W1995412269
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:121071217
Keywords
Nuclear magnetic resonance, Physics, Resonance (particle physics), Nuclear physics, Atomic physics
References
No references recorded for this paper.
Cited by
- Molecular simulations of conformational transitions in biomolecules using a novel computational tool
- Cross-polarization dynamics and spin diffusion in some aromatic compounds.
- Determination of distances involving exchangeable protons from NOESY spectra of two DNA dodecamers
- Two-, three-, and four-dimensional nuclear magnetic resonance spectroscopy of protein pharmaceuticals.
- Proton fluorine wideline separation experiments on poly (vinylidene difluoride).
- Protein structure calculation from NMR data.
- A model for the function of the bisphosphorylated heart-specific troponin-I N-terminus
- WIM/WISE NMR studies of chain dynamics in solid polymers and blends.
- A “structural” water molecule in the family of fatty acid binding proteins
- Double-quantum excitation in the NMR of spinning solids by pulse-assisted rotational resonance.
- Frequency selective heteronuclear dipolar recoupling in rotating solids: accurate (13)C-(15)N distance measurements in uniformly (13)C,(15)N-labeled peptides.
- Proton exchange and local stability in a DNA triple helix containing a G.TA triad.
- Coherent excitation with phase-incremented pulses.
- Calcium-43 NMR of calcium-binding proteins.
- Méthodologie d'analyse de défaillance pour l'évaluation de la fiabilité de diodes électroluminescentes GaN
- Simulation strategies and signatures of chaos in classical nonlinear response.
- Interaction of the fusogenic peptide B18 in its amyloid-state with lipid membranes studied by solid state NMR.
- Measuring 1H-1H and 1H-13C RDCs in methyl groups: example of pulse sequences with numerically optimized coherence transfer schemes.
- Optimal experiments for maximizing coherence transfer between coupled spins.
- Rotating‐frame intermolecular double‐quantum spin‐lattice relaxation T1ρ, DQC‐weighted magnetic resonance imaging