1 |
Capillary bridges between spherical particles under suction control: Rupture distances and capillary forces Zhao CF, Kruyt NP, Millet O Powder Technology, 360, 622, 2020 |
2 |
An original method for measuring liquid surface tension from capillary bridges between two equal-sized spherical particles Nguyen HNG, Zhao CF, Millet O, Gagneux G Powder Technology, 363, 349, 2020 |
3 |
Capillary bridges between unequal-sized spherical particles: Rupture distances and capillary forces Zhao CF, Kruyt NP, Millet O Powder Technology, 346, 462, 2019 |
4 |
Capillary bridge force between non-perfectly wettable spherical particles: An analytical theory for the pendular regime Zhao CF, Kruyt NP, Millet O Powder Technology, 339, 827, 2018 |
5 |
Contribution of Shape and Charge to the Inhibition of a Family GH99 endo-alpha-1,2-Mannanase Petricevic M, Sobala LF, Fernandes PZ, Raich L, Thompson AJ, Bernardo-Seisdedos G, Millet O, Zhu S, Sollogoub M, Jimenez-Barbero J, Rovira C, Davies GJ, Williams SJ Journal of the American Chemical Society, 139(3), 1089, 2017 |
6 |
Analytic Calculation of Capillary Bridge Properties Deduced as an Inverse Problem from Experimental Data Gagneux G, Millet O Transport in Porous Media, 105(1), 117, 2014 |
7 |
Ionic transfer in charged porous media. Periodic homogenization and parametric study on 2D microstructures Bourbatache K, Millet O, Ait-Mokhtar A International Journal of Heat and Mass Transfer, 55(21-22), 5979, 2012 |
8 |
Hydration Dynamics of a Halophilic Protein in Folded and Unfolded States Qvist J, Ortega G, Tadeo X, Millet O, Halle B Journal of Physical Chemistry B, 116(10), 3436, 2012 |
9 |
Carbohydrate Affinity for the Glucose-Galactose Binding Protein Is Regulated by Allosteric Domain Motions Ortega G, Castano D, Diercks T, Millet O Journal of the American Chemical Society, 134(48), 19869, 2012 |
10 |
Modeling the Chlorides Transport in Cementitious Materials By Periodic Homogenization Bourbatache K, Millet O, Ait-Mokhtar A, Amiri O Transport in Porous Media, 94(1), 437, 2012 |