We demonstrate an ultrahigh-sensitive plasmonic sensing of gas, employing a two-dimensional (2D) dielectric grating fabricated by laser interference lithography. The 2D grating was designed with the period of 500 nm and prepared in an AZ1505 photoresist layer on a gold film of 20 nm thickness deposited on a fused silica glass substrate. The surface plasmon resonance (SPR) in the Kretschmann configuration with spectral interrogation was utilized to measure the response of the sensor to vapors of aqueous solution of ethanol. Based on measurement of the gas refractive indices with the reference Au/Cr/SF10 sample, the resonance wavelength dependence was obtained. The SPR response of the structure in a spectral range of 1.68-1.85 mu m with a sen...
A brief overview of recent trends in Surface Plasmon Resonance (SPR) technology especially for gas s...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Nanoplasmonic thin films, composed of noble metal nanoparticles (gold) embedded in an oxide matrix, ...
Surface plasmon resonance excitation with optical fiber gratings has been typically studied in aqueo...
International audienceAlthough optical transducers are not the pre-dominant devices in the field of ...
Surface Plasmon resonance (SPR) sensor technology has great potential for detection and analysis of ...
This work presents a comprehensive review on gas sensors based on localized surface plasmon resonanc...
The development of sensing schemes for the detection of health-threatening gases is an attractive su...
The development of sensing schemes for the detection of health-threatening gases is an attractive su...
In this work, we have demonstrated an optical surface Plasmon resonance (SPR) sensor head that is ba...
Plasmonic hydrogen gas sensors have become widely used in recent years due to their low cost, reliab...
We have developed a plasmonic gas sensing system using transmissive (metal hole array) and scatterin...
Abstract: We report the first inert gas sensing and characterization studies based on high-resolutio...
In this work, the fabrication of a SPR (Surface Plasmon Resonance)-grating coupler using Laser Inter...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
A brief overview of recent trends in Surface Plasmon Resonance (SPR) technology especially for gas s...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Nanoplasmonic thin films, composed of noble metal nanoparticles (gold) embedded in an oxide matrix, ...
Surface plasmon resonance excitation with optical fiber gratings has been typically studied in aqueo...
International audienceAlthough optical transducers are not the pre-dominant devices in the field of ...
Surface Plasmon resonance (SPR) sensor technology has great potential for detection and analysis of ...
This work presents a comprehensive review on gas sensors based on localized surface plasmon resonanc...
The development of sensing schemes for the detection of health-threatening gases is an attractive su...
The development of sensing schemes for the detection of health-threatening gases is an attractive su...
In this work, we have demonstrated an optical surface Plasmon resonance (SPR) sensor head that is ba...
Plasmonic hydrogen gas sensors have become widely used in recent years due to their low cost, reliab...
We have developed a plasmonic gas sensing system using transmissive (metal hole array) and scatterin...
Abstract: We report the first inert gas sensing and characterization studies based on high-resolutio...
In this work, the fabrication of a SPR (Surface Plasmon Resonance)-grating coupler using Laser Inter...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
A brief overview of recent trends in Surface Plasmon Resonance (SPR) technology especially for gas s...
Advances in the understanding and fabrication of plasmonic nanostructures have led to a plethora of ...
Nanoplasmonic thin films, composed of noble metal nanoparticles (gold) embedded in an oxide matrix, ...