Under illumination, metal nanoparticles can turn into ideal nanosources of heat due to enhanced light absorption at the plasmonic resonance wavelength. In this article, we aim at providing a comprehensive description of the generation of microbubbles in a liquid occurring around plasmonic nanoparticles under continuous illumination. We focus on a common situation where the nanoparticles are located on a solid substrate and immersed in water. Experimentally, we evidenced a series of singular phenomena: (i) the bubble lifetime after heating can reach several minutes, (ii) the bubbles are not made of water steam but of air, and (iii) the local temperature required to trigger bubble generation is much larger than 100 degrees C: This last observ...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
When plasmonic nanoparticles (PNPs) are illuminated by a light source with a plasmon frequency, an i...
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...
Thermo-optically generated bubbles in water provide a powerful means for active matter control in mi...
Noble metal nanoparticles immersed in a liquid and irradiated by resonant light can rapidly heat up ...
7 pags, 4 figsWhen an Au nanoparticle in a liquid medium is illuminated with resonant light of suffi...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
When plasmonic nanoparticles (PNPs) are illuminated by a light source with a plasmon frequency, an i...
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...
Thermo-optically generated bubbles in water provide a powerful means for active matter control in mi...
Noble metal nanoparticles immersed in a liquid and irradiated by resonant light can rapidly heat up ...
7 pags, 4 figsWhen an Au nanoparticle in a liquid medium is illuminated with resonant light of suffi...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
Microbubbles produced by exposing water-immersed metallic nanoparticles to resonant light play an im...
When an Au nanoparticle in a liquid medium is illuminated with resonant light of sufficient intensit...
When plasmonic nanoparticles (PNPs) are illuminated by a light source with a plasmon frequency, an i...
Metal nanoparticles under laser irradiation can produce enormous heat due to surface plasmon resonan...