Selective homonuclear 2D J-resolved spectroscopy
Document type :
Article dans une revue scientifique: Article original
Title :
Selective homonuclear 2D J-resolved spectroscopy
Author(s) :
Sinnaeve, Davy [Auteur]
Biologie Structurale Intégrative [ERL 9002 - INSERM U1167 - BSI]
Facteurs de Risque et Déterminants Moléculaires des Maladies liées au Vieillissement - U 1167 [RID-AGE]

Biologie Structurale Intégrative [ERL 9002 - INSERM U1167 - BSI]
Facteurs de Risque et Déterminants Moléculaires des Maladies liées au Vieillissement - U 1167 [RID-AGE]
Journal title :
Emagres
Pages :
267-282
Publisher :
Wiley
Publication date :
2020
English keyword(s) :
2D J-resolved spectroscopy
selective pulses
pure shift NMR
SERF
G-SERF
PSYCHEDELIC
scalar couplings
residual dipolar couplings
Zangger-Sterk
PSYCHE
selective pulses
pure shift NMR
SERF
G-SERF
PSYCHEDELIC
scalar couplings
residual dipolar couplings
Zangger-Sterk
PSYCHE
HAL domain(s) :
Chimie/Chimie analytique
English abstract : [en]
Selective 2D J-resolved spectroscopy delivers 2D spectra where exclusively homonuclear couplings to a selected spin feature as doublets along the indirect dimension, facilitating their measurement. The original experiment, ...
Show more >Selective 2D J-resolved spectroscopy delivers 2D spectra where exclusively homonuclear couplings to a selected spin feature as doublets along the indirect dimension, facilitating their measurement. The original experiment, SERF, uses frequency-selective pulses in order to manipulate the evolution of particular couplings. This basic principle has been improved and expanded upon in many follow-up experiments over the years. Experiments using the Zangger–Sterk or PSYCHE pulse sequence elements have resulted in variants called G-SERF and PSYCHEDELIC, respectively, and allow observation of a wider spectral bandwidth and decoupling of spins with close chemical shifts. Also, strategies to achieve high-resolution full absorption mode line shapes have been proposed. Finally, homonuclear decoupling methods have been introduced to suppress couplings to nonselected spins in the spectrum and thus avoid spectral overlap. Rather than providing a historic and comprehensive overview of the many different variations of SERF, this article presents the selective 2D J-resolved spectroscopy as a modular experiment, where these various features can be introduced to fit a particular situation. Advantages and drawbacks of each variation are discussed.Show less >
Show more >Selective 2D J-resolved spectroscopy delivers 2D spectra where exclusively homonuclear couplings to a selected spin feature as doublets along the indirect dimension, facilitating their measurement. The original experiment, SERF, uses frequency-selective pulses in order to manipulate the evolution of particular couplings. This basic principle has been improved and expanded upon in many follow-up experiments over the years. Experiments using the Zangger–Sterk or PSYCHE pulse sequence elements have resulted in variants called G-SERF and PSYCHEDELIC, respectively, and allow observation of a wider spectral bandwidth and decoupling of spins with close chemical shifts. Also, strategies to achieve high-resolution full absorption mode line shapes have been proposed. Finally, homonuclear decoupling methods have been introduced to suppress couplings to nonselected spins in the spectrum and thus avoid spectral overlap. Rather than providing a historic and comprehensive overview of the many different variations of SERF, this article presents the selective 2D J-resolved spectroscopy as a modular experiment, where these various features can be introduced to fit a particular situation. Advantages and drawbacks of each variation are discussed.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
Collections :
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