1 |
Experimental Measurement and Theoretical Assessment of Fast Lanthanide Electronic Relaxation in Solution with Four Series of Isostructural Complexes Funk AM, Fries PH, Harvey P, Kenwright AM, Parker D Journal of Physical Chemistry A, 117(5), 905, 2013 |
2 |
High Relaxivity and Stability of a Hydroxyquinolinate-Based Tripodal Monoaquagadolinium Complex for Use as a Bimodal MRI/Optical Imaging Agent Tallec G, Fries PH, Imbert D, Mazzanti M Inorganic Chemistry, 50(17), 7943, 2011 |
3 |
Parallel NMR Based on Solution Magnetic-Susceptibility Differences. Application to Isotopic Effects on Self-Diffusion Fries PH, Imbert D Journal of Chemical and Engineering Data, 55(5), 2048, 2010 |
4 |
Outer-Sphere Investigation of MRI Relaxation Contrast Agents. Example of a Cyclodecapeptide Gadolinium Complex with Second-Sphere Water Bonnet CS, Fries PH, Crouzy S, Delangle P Journal of Physical Chemistry B, 114(26), 8770, 2010 |
5 |
A rigorous framework to interpret water relaxivity. The case study of a Gd(III) complex with an alpha-cyclodextrin derivative Bonnet CS, Fries PH, Gadelle A, Gambarelli S, Delangle P Journal of the American Chemical Society, 130(31), 10401, 2008 |
6 |
Local diffusion in paramagnetic solutions by NMR relaxometry at one frequency Melchior A, Fries PH Journal of the American Chemical Society, 128(23), 7424, 2006 |
7 |
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 Fries PH, Gateau C, Mazzanti M Journal of the American Chemical Society, 127(45), 15801, 2005 |
8 |
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 Fries PH, Ferrante G, Belorizky E, Rast S Journal of Chemical Physics, 119(16), 8636, 2003 |
9 |
The solvation of ions in acetonitrile and acetone. II. Monte Carlo simulations using polarizable solvent models Fischer R, Richardi J, Fries PH, Krienke H Journal of Chemical Physics, 117(18), 8467, 2002 |
10 |
A general approach to the electronic spin relaxation of Gd(III) complexes in solutions. Monte Carlo simulations beyond the Redfield limit Rast S, Fries PH, Belorizky E, Borel A, Helm L, Merbach AE Journal of Chemical Physics, 115(16), 7554, 2001 |