Large-area (similar to 8000 mm(2)) Au nanogap plasmon resonator array substrates manufactured using maskless laser interference lithography (LIL) with high uniformity are presented. The periodically spaced subwavelength nanogap arrays are formed between adjacent nanopyramid (NPy) structures with precisely defined pitch and high length density (similar to 1 km cm(-2)), and are ideally suited as scattering sites for surface enhanced Raman scattering (SERS), as well as refractive index sensing. The two-dimensional grid arrangement of NPy structures renders the excitation of the plasmon resonators minimally dependent on the incident polarization. The SERS average enhancement factor (AEF) has been characterized using over 30 000 individual measu...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
Considering the technological difficulties in the existing approaches to form nanoscale gaps, a conv...
To achieve a reliable formation of a surface-enhanced Raman scattering (SERS) sensor with evenly dis...
Developing a sensor that identifies and quantifies trace amounts of analyte molecules is crucially i...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Despite the interesting fundamental science of SERS, the promise of the technique as the basis for p...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
Nanoscale gaps in noble metal films can produce intense electromagnetic enhancement. When Raman-acti...
Novel nanotextured surfaces are presented with periodically self-aligned subwavelength nanogroove an...
We propose and demonstrate a new SERS substrate architecture that couples a dense three-dimensional ...
The confinement of light into nanometer-sized metallic nanogaps can lead to an extremely high field ...
The increasing popularity of surface plasmon resonance (SPR) and surface enhanced Raman scattering (...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
Considering the technological difficulties in the existing approaches to form nanoscale gaps, a conv...
To achieve a reliable formation of a surface-enhanced Raman scattering (SERS) sensor with evenly dis...
Developing a sensor that identifies and quantifies trace amounts of analyte molecules is crucially i...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Despite the interesting fundamental science of SERS, the promise of the technique as the basis for p...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
International audienceThe facile preparation of arrays of plasmonic nanoparticles over a square cent...
Nanoscale gaps in noble metal films can produce intense electromagnetic enhancement. When Raman-acti...
Novel nanotextured surfaces are presented with periodically self-aligned subwavelength nanogroove an...
We propose and demonstrate a new SERS substrate architecture that couples a dense three-dimensional ...
The confinement of light into nanometer-sized metallic nanogaps can lead to an extremely high field ...
The increasing popularity of surface plasmon resonance (SPR) and surface enhanced Raman scattering (...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
We report a new top-down nanofabrication technology to realize large area metal nanowire (m-NW) arra...
Considering the technological difficulties in the existing approaches to form nanoscale gaps, a conv...
To achieve a reliable formation of a surface-enhanced Raman scattering (SERS) sensor with evenly dis...