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Model-free nuclear magnetic resonance study of intermolecular free energy landscapes in liquids with paramagnetic Ln3+ spotlights: Theory and application to Arg-Gly-Asp
A Rigorous Framework To Interpret Water Relaxivity. The Case Study of a Gd(III) Complex with an α-Cyclodextrin Derivative
Célia S. Bonnet, Pascal H. Fries, Andrée Gadelle, Serge Gambarelli and Pascale Delangle Journal of the American Chemical Society 130(31) 10401 (2008) https://doi.org/10.1021/ja802347r
Determination of the rate of a fast exchanging coordinated molecule in a lanthanide(iii) complex by proton NMR
Pascal H. Fries, Marion Giraud and Elie Belorizky Physical Chemistry Chemical Physics 10(38) 5817 (2008) https://doi.org/10.1039/b806752j
Relaxivity in paramagnetic systems: Theory and mechanisms
Solute-solvent contact by intermolecular cross relaxation. I. The nature of the water-hydrophobic interface
Lars Nordstierna, Pavel V. Yushmanov and István Furó The Journal of Chemical Physics 125(7) (2006) https://doi.org/10.1063/1.2336199
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
Pascal H. Fries, Christelle Gateau and Marinella Mazzanti Journal of the American Chemical Society 127(45) 15801 (2005) https://doi.org/10.1021/ja052800l
Dynamics of Xenon inside Hydrophobic Cavities As Probed by NMR Relaxation of Dissolved Laser-Polarized Xenon
Lionel Dubois, Sandra Parrès, J. Gaspard Huber, Patrick Berthault and Hervé Desvaux The Journal of Physical Chemistry B 108(2) 767 (2004) https://doi.org/10.1021/jp0363242
A 19F relaxometric study of the competition of Gd(III) and Lu(III) towards DTPA in water
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
P. H. Fries, G. Ferrante, E. Belorizky and S. Rast The Journal of Chemical Physics 119(16) 8636 (2003) https://doi.org/10.1063/1.1612914
The solvation of ions in acetonitrile and acetone. II. Monte Carlo simulations using polarizable solvent models
R. Fischer, J. Richardi, P. H. Fries and H. Krienke The Journal of Chemical Physics 117(18) 8467 (2002) https://doi.org/10.1063/1.1512281
Intermolecular nuclear relaxation in paramagnetic solutions: from free radicals to rare earths
Élie Belorizky, Pascal H. Fries and Sebastian Rast Comptes Rendus de l'Académie des Sciences - Series IIC - Chemistry 4(11) 825 (2001) https://doi.org/10.1016/S1387-1609(01)01332-9
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