We have created a simple and efficient thermal plasmonic sensor platform by letting a DC current heat plasmonic nanohole arrays. The sensor can be used to determine thermodynamic parameters in addition to monitoring molecular reactions in real-time. As an application example, we use the thermal sensor to determine the kinetics and activation energy for desorption of thiol monolayers on gold. Further, the temperature of the metal can be measured optically by the spectral shift of the bonding surface plasmon mode (0.015 nm/K). We show that this resonance shift is caused by thermal lattice expansion, which reduces the plasma frequency of the metal. The sensor is also used to determine the thin film thermal expansion coefficient through a theor...
Heat management at the nanoscale is an issue of increasing importance. In optoelectronic devices the...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
We have investigated the heat generation from gold nanoparticles resulting from their local plasma r...
We have created a simple and efficient thermal plasmonic sensor platform by letting a DC current hea...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
We used a thin-film thermocouple to detect the thermal effect of surface plasmons excited in Au nano...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
Since the early 2000s, the experimental and theoretical studies of photothermal effects in plasmonic...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
Light absorption and scattering of plasmonic metal nanoparticles can lead to non-equilibrium charge ...
This study aims to design a plasmoresistor device that operates via optoelectronic transduction to...
Modern microelectronic devices have nanoscale features that dissipate power nonuniformly, but fundam...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
Modernmicroelectronic devices have nanoscale features that dissipate power nonuniformly, but fundame...
Thermoplasmonics refers to the investigation of heat generation and distribution of various plasmoni...
Heat management at the nanoscale is an issue of increasing importance. In optoelectronic devices the...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
We have investigated the heat generation from gold nanoparticles resulting from their local plasma r...
We have created a simple and efficient thermal plasmonic sensor platform by letting a DC current hea...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
We used a thin-film thermocouple to detect the thermal effect of surface plasmons excited in Au nano...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
Since the early 2000s, the experimental and theoretical studies of photothermal effects in plasmonic...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
Light absorption and scattering of plasmonic metal nanoparticles can lead to non-equilibrium charge ...
This study aims to design a plasmoresistor device that operates via optoelectronic transduction to...
Modern microelectronic devices have nanoscale features that dissipate power nonuniformly, but fundam...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
Modernmicroelectronic devices have nanoscale features that dissipate power nonuniformly, but fundame...
Thermoplasmonics refers to the investigation of heat generation and distribution of various plasmoni...
Heat management at the nanoscale is an issue of increasing importance. In optoelectronic devices the...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
We have investigated the heat generation from gold nanoparticles resulting from their local plasma r...