Janus nanoparticles containing plasmonic materials have attracted great attention in the thermoplasmonic community due to their potential for applications in thermoelectronics or biomedicine. A significant number of thermoplasmonic applications rely on the heating of nanostructures by using pulsed excitation lasers. The heating generated in these nanostructures is often transferred to other regions via material–fluid interfaces. This heat transfer dynamics is controlled by the interfacial thermal conductance. In this work, we investigate the impact of the interfacial thermal conductance on the thermal relaxation of metal–polymer Janus nanoparticles that generate directional heating under pulsed illumination. We show that neglecting the temp...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a method for increasing temperature remotely using focused visible or infrared l...
Temperature changes in the vicinity of a single absorptive nanostructure caused by local heating hav...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
Janus nanoparticles (JNPs) feature heterogeneous compositions, bringing opportunities in technologic...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
International audienceThermoplasmonics Heating Metal Nanoparticles Using Light Plasmonics is an impo...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
<p>Plasmonic materials can form viable optical absorbers that offer new possibilities for device des...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a method for increasing temperature remotely using focused visible or infrared l...
Temperature changes in the vicinity of a single absorptive nanostructure caused by local heating hav...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
Janus nanoparticles (JNPs) feature heterogeneous compositions, bringing opportunities in technologic...
Thermo-plasmonics: Using metallic nanostructures as nanosources of heat Recent years have seen a gro...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
International audienceThermoplasmonics Heating Metal Nanoparticles Using Light Plasmonics is an impo...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
The excitation of localized surface plasmon resonances in Au and Ag colloids can be used to drive th...
<p>Plasmonic materials can form viable optical absorbers that offer new possibilities for device des...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Thermoplasmonics is a method for increasing temperature remotely using focused visible or infrared l...
Temperature changes in the vicinity of a single absorptive nanostructure caused by local heating hav...