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Écho de spin RMN×COSY×Cohérence unitaire hétéronucléaire par champ pulsé (HSQC)×
DomaineSpectroscopieSpectroscopieSpectroscopie
FamilleProcess / pipelineProcess / pipelineProcess / pipeline
Année d'origine195019761980
Auteur d'origineErwin HahnWüthrich KurtAnil Kumar
TypeSpectroscopic pulse sequenceTwo-dimensional pulse sequenceHeteronuclear correlation sequence
Source fondatriceHahn, E. L. (1950). Spin echoes. Physical Review, 80(4), 580-594. DOI ↗Aue, W. P., Bartholdi, E., & Ernst, R. R. (1976). Two-dimensional spectroscopy. Application to nuclear magnetic resonance. The Journal of Chemical Physics, 64(5), 2229-2246. DOI ↗Bodenhausen, G., & Ruben, D. J. (1981). Natural abundance nitrogen-15 NMR by enhanced heteronuclear spectroscopy. Chemical Physics Letters, 69(2), 185-189. DOI ↗
AliasCPMG pulse sequence, spin-echo NMRCOSY NMR, 2D COSY, 1H-1H COSYHSQC NMR, 1H-13C HSQC, heteronuclear correlation
Apparentées444
RésuméThe spin-echo is a fundamental nuclear magnetic resonance (NMR) pulse sequence technique introduced by Erwin Hahn in 1950. It uses a 90-degree radiofrequency pulse followed by a 180-degree refocusing pulse to create an echo, effectively reversing the effects of magnetic field inhomogeneities and allowing accurate measurement of spin relaxation properties. This technique is essential in modern NMR spectroscopy for both one-dimensional and multidimensional experiments.Correlation Spectroscopy (COSY) is a two-dimensional NMR technique that correlates proton chemical shifts through scalar coupling (J-coupling), revealing which protons are magnetically coupled and hence bonded through multiple bonds. Developed by Aue, Bartholdi, and Ernst in 1976, COSY became one of the most important tools in structural elucidation, enabling chemists to map out proton connectivity patterns and deduce molecular topology without isotopic labeling.Heteronuclear Single-Quantum Coherence (HSQC) is a 2D NMR technique that correlates proton and carbon-13 (or other heteronuclei) chemical shifts through one-bond coupling constants (1JHX). Developed in the early 1980s, HSQC rapidly became the workhorse of structural chemistry because it directly maps which carbons bear which protons, providing a comprehensive view of carbon skeleton connectivity and substitution patterns.
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ScholarGateComparer des méthodes: NMR Spin-Echo · COSY · HSQC. Consulté le 2026-06-20 sur https://scholargate.app/fr/compare