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Cited article:

Systematic theoretical investigation of the zero-field splitting in Gd(III) complexes: Wave function and density functional approaches

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Experimental Measurement and Theoretical Assessment of Fast Lanthanide Electronic Relaxation in Solution with Four Series of Isostructural Complexes

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Determination of the Static Zero‐Field Splitting of Gd3+ Complexes in Solution from the Shifts of the Central Magnetic Fields of Their EPR Spectra

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ChemPhysChem 13 (8) 2074 (2012)
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Computing Electronic Spin Relaxation for Gd3+‐Based Contrast Agents – Practical Implementation

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European Journal of Inorganic Chemistry 2012 (12) 2156 (2012)
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Outer-Sphere Investigation of MRI Relaxation Contrast Agents. Example of a Cyclodecapeptide Gadolinium Complex with Second-Sphere Water

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The Journal of Physical Chemistry B 114 (26) 8770 (2010)
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Towards the Rational Design of MRI Contrast Agents: Electron Spin Relaxation Is Largely Unaffected by the Coordination Geometry of Gadolinium(III)–DOTA‐Type Complexes

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Chemistry – A European Journal 14 (9) 2658 (2008)
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A Rigorous Framework To Interpret Water Relaxivity. The Case Study of a Gd(III) Complex with an α-Cyclodextrin Derivative

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Multiple-Frequency EPR Spectra of Two Aqueous Gd3+Polyamino Polypyridine Carboxylate Complexes:  A Study of High Field Effects

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Stochastic Liouville equation treatment of the electron paramagnetic resonance line shape of an S-state ion in solution

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Variable Temperature and EPR Frequency Study of Two Aqueous Gd(III) Complexes with Unprecedented Sharp Lines

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The Journal of Physical Chemistry A 110 (45) 12434 (2006)
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A High-Frequency EPR Study of Frozen Solutions of GdIII Complexes:  Straightforward Determination of the Zero-Field Splitting Parameters and Simulation of the NMRD Profiles

Meriem Benmelouka, Johan Van Tol, Alain Borel, et al.
Journal of the American Chemical Society 128 (24) 7807 (2006)
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Electronic relaxation of paramagnetic metal ions and NMR relaxivity in solution: Critical analysis of various approaches and application to a Gd(III)-based contrast agent

Pascal H. Fries and Elie Belorizky
The Journal of Chemical Physics 123 (12) (2005)
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1H NMRD profiles and ESR lineshapes of Gd(III) complexes: a comparison between the generalized SBM and the stochastic Liouville approach

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Journal of Magnetic Resonance 173 (1) 75 (2005)
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Practical Route to Relative Diffusion Coefficients and Electronic Relaxation Rates of Paramagnetic Metal Complexes in Solution by Model-Independent Outer-Sphere NMRD. Potentiality for MRI Contrast Agents

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MD Simulations of Acyclic and Macrocyclic Gd3+‐Based MRI Contrast Agents: Influence of the Internal Mobility on Water Proton Relaxivity

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The rotational motion and electronic relaxation of the Gd(III) aqua complex in water revisited through a full proton relaxivity study of a probe solute

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Multiexponential Electronic Spin Relaxation and Redfield's Limit in Gd(III) Complexes in Solution:  Consequences for 17O/1H NMR and EPR Simultaneous Analysis

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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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A general approach to the electronic spin relaxation of Gd(III) complexes in solutions. Monte Carlo simulations beyond the Redfield limit

S. Rast, P. H. Fries, E. Belorizky, A. Borel, L. Helm and A. E. Merbach
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Comment on the intermolecular relaxation dispersion at 400, 600, 800 MHz of the (CH3)4N+ protons in D2O solutions with paramagnetic [Gd(D2O)8]3+ complexes

A. Favier, D. Chapon, P.H. Fries, S. Rast and E. Belorizky
Chemical Physics Letters 320 (1-2) 49 (2000)
https://doi.org/10.1016/S0009-2614(00)00205-0