Physical principles and miniaturization of spark assisted chemical engraving (SACE) R Wüthrich, LA Hof, A Lal, K Fujisaki, H Bleuler, P Mandin, G Picard Journal of Micromechanics and Microengineering 15 (10), S268, 2005 | 125 | 2005 |
Modelling and calculation of the current density distribution evolution at vertical gas-evolving electrodes P Mandin, J Hamburger, S Bessou, G Picard Electrochimica Acta 51 (6), 1140-1156, 2005 | 122 | 2005 |
Influence of gravity and pressure on pool fire-type diffusion flames JM Most, P Mandin, J Chen, P Joulain, D Durox, AC Fernande-Pello Symposium (International) on combustion 26 (1), 1311-1317, 1996 | 119 | 1996 |
Review of necessary thermophysical properties and their sensivities with temperature and electrolyte mass fractions for alkaline water electrolysis multiphysics modelling D Le Bideau, P Mandin, M Benbouzid, M Kim, M Sellier International Journal of Hydrogen Energy 44 (10), 4553-4569, 2019 | 80 | 2019 |
Two-phase electrolysis process: From the bubble to the electrochemical cell properties P Mandin, AA Aissa, H Roustan, J Hamburger, G Picard Chemical Engineering and Processing: Process Intensification 47 (11), 1926-1932, 2008 | 79 | 2008 |
Performance evaluation of environmentally benign nonionic biosurfactant for enhanced oil recovery S Seo, M Mastiani, B Mosavati, DM Peters, P Mandin, M Kim Fuel 234, 48-55, 2018 | 69 | 2018 |
Microscale thermometry: A review MM Kim, A Giry, M Mastiani, GO Rodrigues, A Reis, P Mandin Microelectronic Engineering 148, 129-142, 2015 | 64 | 2015 |
Modelling and numerical simulation of hydrodynamical processes in a confined rotating electrode configuration P Mandin, T Pauporté, P Fanouillère, D Lincot Journal of Electroanalytical Chemistry 565 (2), 159-173, 2004 | 56 | 2004 |
Electrochemical discharges—Discovery and early applications R Wüthrich, P Mandin Electrochimica Acta 54 (16), 4031-4035, 2009 | 53 | 2009 |
Bubble over-potential during two-phase alkaline water electrolysis P Mandin, Z Derhoumi, H Roustan, W Rolf Electrochimica Acta 128, 248-258, 2014 | 44 | 2014 |
Prediction of the electrodeposition process behavior with the gravity or acceleration value at continuous and discrete scale P Mandin, JM Cense, B Georges, V Favre, T Pauporté, Y Fukunaka, ... Electrochimica acta 53 (1), 233-244, 2007 | 43 | 2007 |
Importance of the density gradient effects in modelling electro deposition process at a rotating cylinder electrode P Mandin, C Fabian, D Lincot Electrochimica acta 51 (19), 4067-4079, 2006 | 40 | 2006 |
Ni-Fe alloy nanostructured electrodes for water splitting in alkaline electrolyser B Buccheri, F Ganci, B Patella, G Aiello, P Mandin, R Inguanta Electrochimica Acta 388, 138588, 2021 | 39 | 2021 |
SOFC modelling and numerical simulation of performances P Mandin, C Bernay, S Tran‐Dac, A Broto, D Abes, M Cassir Fuel Cells 6 (1), 71-78, 2006 | 37 | 2006 |
Eulerian two-fluid model of alkaline water electrolysis for hydrogen production D Le Bideau, P Mandin, M Benbouzid, M Kim, M Sellier, F Ganci, ... Energies 13 (13), 3394, 2020 | 36 | 2020 |
Hydrogen consumption and power density in a co-flow planar SOFC HB Moussa, B Zitouni, K Oulmi, B Mahmah, M Belhamel, P Mandin International journal of hydrogen energy 34 (11), 5022-5031, 2009 | 32 | 2009 |
Industrial aluminium production: the Hall-Heroult process modelling P Mandin, R Wüthrich, H Roustan ECS Transactions 19 (26), 1, 2009 | 31 | 2009 |
Mean and unsteady hydrodynamic and mass transport properties at a rotating cylinder electrode: From laminar to transitional flow regime P Mandin, C Fabian, D Lincot Journal of Electroanalytical Chemistry 586 (2), 276-296, 2006 | 25 | 2006 |
Ni alloy nanowires as high efficiency electrode materials for alkaline electrolysers F Ganci, B Patella, E Cannata, V Cusumano, G Aiello, C Sunseri, ... International Journal of Hydrogen Energy 46 (72), 35777-35789, 2021 | 23 | 2021 |
Synthesis and characterization of microporous granular activated carbon from Silver berry seeds using ZnCl2 activation F Benmahdi, K Oulmi, S Khettaf, M Kolli, O Merdrignac-Conanec, ... Fullerenes, Nanotubes and Carbon Nanostructures 29 (9), 657-669, 2021 | 23 | 2021 |