The physicochemical hydrodynamics of bubbles and droplets out of equilibrium, in particular with phase transitions, display surprisingly rich and often counterintuitive phenomena. Here we experimentally and theoretically study the nucleation and early evolution of plasmonic bubbles in a binary liquid consisting of water and ethanol. Remarkably, the submillimeter plasmonic bubble is found to be periodically attracted to and repelled from the nanoparticle-decorated substrate, with frequencies of around a few kilohertz. We identify the competition between solutal and thermal Marangoni forces as the origin of the periodic bouncing. The former arises due to the selective vaporization of ethanol at the substrate's side of the bubble, leading to a...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
The physicochemical hydrodynamics of bubbles and droplets out of equilibrium, in particular with pha...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Multi-component fluids with phase transitions show a plethora of fascinating phenomena with rich phy...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
International audienceUnder illumination, metal nanoparticles can turn into ideal nanosources of hea...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
The physicochemical hydrodynamics of bubbles and droplets out of equilibrium, in particular with pha...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
The growth of surface plasmonic microbubbles in binary water/ethanol solutions is experimentally stu...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Plasmonic bubbles are of great relevance in numerous applications, including catalytic reactions, mi...
Multi-component fluids with phase transitions show a plethora of fascinating phenomena with rich phy...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
International audienceUnder illumination, metal nanoparticles can turn into ideal nanosources of hea...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...
Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced ligh...