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  4. EPR Spectroscopy of MRI-Related Gd(III) Complexes: Simultaneous Analysis of Multiple Frequency and Temperature Spectra, Including Static and Transient Crystal Field Effects
 
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research article

EPR Spectroscopy of MRI-Related Gd(III) Complexes: Simultaneous Analysis of Multiple Frequency and Temperature Spectra, Including Static and Transient Crystal Field Effects

Rast, Sebastian
•
Borel, Alain  
•
Helm, Lothar  
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2001
Journal of the American Chemical Society

For the first time, a very general theoretical method is proposed to interpret the full electron paramagnetic resonance (EPR) spectra at multiple temperatures and frequencies in the important case of S-state metal ions complexed in liquid solution. This method is illustrated by a careful analysis of the measured spectra of two Gd3+ (S = 7/2) complexes. It is shown that the electronic relaxation mechanisms at the origin of the EPR line shape arise from the combined effects of the modulation of the static crystal field by the random Brownian rotation of the complex and of the transient zero-field splitting. A detailed study of the static crystal field mechanism shows that, contrarily to the usual global models involving only second-order terms, the fourth and sixth order terms can play a non-negligible role. The obtained parameters are well interpreted in the framework of the physics of the various underlying relaxation processes. A better understanding of these mechanisms is highly valuable since they partly control the efficiency of paramagnetic metal ions in contrast agents for medical magnetic resonance imaging (MRI).

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Type
research article
DOI
10.1021/ja003707u
Author(s)
Rast, Sebastian
•
Borel, Alain  
•
Helm, Lothar  
•
Belorizky, Elie
•
Fries, Pascal H.
•
Merbach, Andre E.  
Date Issued

2001

Published in
Journal of the American Chemical Society
Volume

123

Issue

11

Start page

2637

End page

2644

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCIB  
Available on Infoscience
February 15, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/223765
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