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Nom:
Name:
PIRAT Christophe
Equipe(s):
Team(s):
Liquides et interfaces
Position:
Enseignant-chercheur
Bureau(x):
Office(s):
BRILLOUIN / 1er / 11-010
Mel:
Mail:
christophe.pirat@univ-lyon1.fr
Tél(s):
Phone(s):
0472432796
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Experimental and numerical study of the evaporation of a pure water drop on a salt surface
Experimental and numerical study of the evaporation of a pure water drop on a salt surface
Alexandra Mailleur,
Christophe Pirat
,
Charlotte Rivière
, Irina Vodolazskaya,
Jean Colombani
The European Physical Journal. Special Topics (2024)
Continuous Manipulation and Characterization of Colloidal Beads and Liposomes via Diffusiophoresis in Single- and Double-Junction Microchannels
Continuous Manipulation and Characterization of Colloidal Beads and Liposomes via Diffusiophoresis in Single- and Double-Junction Microchannels
Adnan Chakra, Naval Singh, Goran Vladisavljević, François Nadal,
Cecile Cottin-Bizonne
,
Christophe Pirat
, Guido Bolognesi
ACS Nano, vol. 17, p14644–14657 (2023)
Depressurization-induced drop breakup through bubble growth
Depressurization-induced drop breakup through bubble growth
Christophe Pirat
,
Cecile Cottin-Bizonne
, Choongyeop Lee,
Stella M.M. Ramos
,
Olivier Pierre-Louis
Physical Review Fluids, vol. 8, pL091601 (2023)
Ring shells obtained from pure water drops evaporating on a soluble substrate
Ring shells obtained from pure water drops evaporating on a soluble substrate
Alexandra Mailleur,
Christophe Pirat
,
G Simon
, Rémy Fulcrand,
Jean Colombani
Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 651, p129724 (2022)
Composite Norland Optical Adhesive (NOA)/silicon flow focusing devices for colloidal particle manipulation and synthesis
Composite Norland Optical Adhesive (NOA)/silicon flow focusing devices for colloidal particle manipulation and synthesis
Naval Singh, Adnan Chakra, Goran Vladisavljević,
Cecile Cottin-Bizonne
,
Christophe Pirat
, Guido Bolognesi
Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 652, p129808 (2022)
Enhanced Accumulation of Colloidal Particles in Microgrooved Channels via Diffusiophoresis and Steady-State Electrolyte Flows
Enhanced Accumulation of Colloidal Particles in Microgrooved Channels via Diffusiophoresis and Steady-State Electrolyte Flows
Naval Singh, Goran Vladisavljević, François Nadal,
Cecile Cottin-Bizonne
,
Christophe Pirat
, Guido Bolognesi
Langmuir, vol. 38, p14053-14062 (2022)
Flow reversal inside a drop evaporating on a soluble substrate
Flow reversal inside a drop evaporating on a soluble substrate
Alexandra Mailleur,
Jean Colombani
,
Christophe Pirat
,
Charlotte Rivière
, Irina Vodolazskaya
Physical Review Fluids, vol. 7, p093605 (2022)
Drag reduction on drop during impact on multiscale superhydrophobic surfaces
Drag reduction on drop during impact on multiscale superhydrophobic surfaces
Grégoire Martouzet, Choongyeop Lee,
Christophe Pirat
,
Christophe Ybert
,
Anne-Laure Biance
Journal of Fluid Mechanics, vol. 892 (2020)
Reversible Trapping of Colloids in Microgrooved Channels via Diffusiophoresis under Steady-State Solute Gradients
Reversible Trapping of Colloids in Microgrooved Channels via Diffusiophoresis under Steady-State Solute Gradients
Naval Singh, Goran T Vladisavljević, François Nadal,
Cecile Cottin-Bizonne
,
Christophe Pirat
, Guido Bolognesi
Physical Review Letters, vol. 125, p248002 (2020)
Stability of frozen water droplets on highly hydrophobic porous surfaces: Temperature effects
Stability of frozen water droplets on highly hydrophobic porous surfaces: Temperature effects
Stella M.M. Ramos
,
Christophe Pirat
,
Cecile Cottin-Bizonne
Applied Surface Science, vol. 469, p864-869 (2019)
Hollow Rims from Water Drop Evaporation on Salt Substrates
Hollow Rims from Water Drop Evaporation on Salt Substrates
Alexandra Mailleur,
Christophe Pirat
,
Olivier Pierre-Louis
,
Jean Colombani
Physical Review Letters, vol. 121, p214501 (2018)
Enhanced water repellency of surfaces coated with multiscale carbon structures
Enhanced water repellency of surfaces coated with multiscale carbon structures
Julien Marchalot,
Stella M.M. Ramos
,
Christophe Pirat
, Catherine Journet
Applied Surface Science, vol. 428, p364-369 (2018)
Water Drop Evaporation on Mushroom-like Superhydrophobic Surfaces: Temperature Effects
Water Drop Evaporation on Mushroom-like Superhydrophobic Surfaces: Temperature Effects
Rodney Marcelo Do Nascimento,
Cecile Cottin-Bizonne
,
Christophe Pirat
,
Stella M.M. Ramos
Langmuir, vol. 32, p2005-2009 (2016)
Jumping acoustic bubbles on lipid bilayers
Jumping acoustic bubbles on lipid bilayers
Christelle C. Der Loughian, Pauline Muleki Seya,
Christophe Pirat
, Claude Inserra, Jean-Christophe Béra, J.-P. Rieu
Soft Matter, vol. 11, p3460-3469 (2015)
Two types of Cassie-to-Wenzel wetting transitions on superhydrophobic surfaces during drop impact
Two types of Cassie-to-Wenzel wetting transitions on superhydrophobic surfaces during drop impact
Choongyeop Lee, Henri Lastakowski,
Anne-Laure Biance
,
Christophe Pirat
, Chang-Jin “cj” Kim,
Christophe Ybert
Soft Matter, vol. 11, p4592 - 4599 (2015)
Soluble Substrate
Soluble Substrate
Christophe Pirat
, Jean Colombani, Alexandra Mailleur
, p173-185 (2015)
Sessile drop evaporation on (super)hydrophobic surfaces: Effect of low pressure on the contact line dynamics
Sessile drop evaporation on (super)hydrophobic surfaces: Effect of low pressure on the contact line dynamics
I. Kiper, Rémy Fulcrand,
Christophe Pirat
,
G Simon
, Benoit Stutz,
Stella M.M. Ramos
Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 482, p617-623 (2015)
Bridging local to global dynamics of drop impact onto solid substrates
Bridging local to global dynamics of drop impact onto solid substrates
H. Lastakowski, F. Boyer,
Anne-Laure Biance
,
Christophe Pirat
,
Christophe Ybert
Journal of Fluid Mechanics, vol. 747, p103 - 118 (2014)
Evidence of slippage breakdown for a superhydrophobic microchannel
Evidence of slippage breakdown for a superhydrophobic microchannel
Guido Bolognesi,
Cecile Cottin-Bizonne
,
Christophe Pirat
Physics of Fluids, vol. 26, p082004 (2014)
A novel technique for simultaneous velocity and interface profile measurements on micro-structured surfaces
A novel technique for simultaneous velocity and interface profile measurements on micro-structured surfaces
Guido Bolognesi,
Cecile Cottin-Bizonne
, E. M. Guene, Jérémie Teisseire,
Christophe Pirat
Soft Matter, p2239-2244 (2013)
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