Surface enhanced Raman spectroscopy (SERS) has been largely exploited in the last decade for biochemical and biomedical research. But some issues still require attention before transferring SERS to bioclinical routinely practices, such as reproducibility, quantitative analysis and signal background interference. In this work we propose an easy and cheap route, based on a template stripping technique, for producing plasmonic nanostructured films with SERS capabilities. We focus our attention to nanoholes in a continuous gold film, conversely to the majority of the literature which is dealing with individual nanostructures. Plasmon resonances occur at the holes edges, thus enabling the possibility of SERS signals from biomolecules and the pot...
We analyzed the use of subwaveleneth ordered nanohole patterns for detection of miniscule amounts of...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...
International audienceWe show herein for the first time the ability to fabricate highly sensitive SE...
Surface enhanced Raman spectroscopy (SERS) has been largely exploited in the last decade for biochem...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
In this work we report on an active SERS (Surface Enhanced Raman Scattering) substrate with well-def...
The use of plasmonic nanostructures in sensing applications has increased in recent years owing to i...
Surface-enhanced Raman spectroscopy (SERS) provides a strong enhancement to an inherently weak Raman...
Conventional laboratory techniques exhibit impressive sensing performance and still constitute an ir...
Nanoscale gaps in noble metal films can produce intense electromagnetic enhancement. When Raman-acti...
This thesis is focused on gold nanostructuration on glass substrate in order to study and optimize t...
The present work focuses on plasmonic properties of nanostructures to be used as optical biosensors....
We report the use of annular nano-voids in a metallic thin-film as programmable molecular sensors fo...
We present metallic nanohole arrays fabricated on suspended membranes as an optofluidic substrate. M...
Arrays of metal nano-holes have proved to be among of the most promising structures for applications...
We analyzed the use of subwaveleneth ordered nanohole patterns for detection of miniscule amounts of...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...
International audienceWe show herein for the first time the ability to fabricate highly sensitive SE...
Surface enhanced Raman spectroscopy (SERS) has been largely exploited in the last decade for biochem...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
In this work we report on an active SERS (Surface Enhanced Raman Scattering) substrate with well-def...
The use of plasmonic nanostructures in sensing applications has increased in recent years owing to i...
Surface-enhanced Raman spectroscopy (SERS) provides a strong enhancement to an inherently weak Raman...
Conventional laboratory techniques exhibit impressive sensing performance and still constitute an ir...
Nanoscale gaps in noble metal films can produce intense electromagnetic enhancement. When Raman-acti...
This thesis is focused on gold nanostructuration on glass substrate in order to study and optimize t...
The present work focuses on plasmonic properties of nanostructures to be used as optical biosensors....
We report the use of annular nano-voids in a metallic thin-film as programmable molecular sensors fo...
We present metallic nanohole arrays fabricated on suspended membranes as an optofluidic substrate. M...
Arrays of metal nano-holes have proved to be among of the most promising structures for applications...
We analyzed the use of subwaveleneth ordered nanohole patterns for detection of miniscule amounts of...
Surface enhanced Raman scattering (SERS) is a powerful analytical technique that allows the enhancem...
International audienceWe show herein for the first time the ability to fabricate highly sensitive SE...