Coupling between nanoplasmonics and semiconducting materials can enhance and complement the efficiency of almost all semiconductor technologies. It has been demonstrated that such composites enhance the light coupling to nanowires, increase photocurrent in detectors, enable sub‐gap detection, allow DNA detection, and produce large non‐linearity. Nevertheless, the tailored fabrication using the conventional methods to produce such composites remains a formidable challenge. This work attempts to resolve that deficiency by deploying the immersion‐plating method to spontaneously grown gold clusters inside nano‐porous silicon (np‐Si). This method allows the fabrication of thin films of np‐Si with embedded gold nanoparticles (Au) and creates nano...
Nanophotonics deals with the interaction of light with matter in nanometer scale. One of the subsets...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...
Coupling between nanoplasmonics and semiconducting materials can enhance and complement the efficien...
Coupling between nanoplasmonics and semiconducting materials can enhance and complement the efficien...
Colored nanoporous silicon thin films were employed as dielectric spacing layers for the enhancement...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
The intersection of silicon technology with the rapidly growing field of nanoplasmonics, provides a ...
Localized surface plasmons (LSP) can be excited in metal nanoparticles (NP) by UV, visible or NIR li...
A composite material of plasmonic nanoparticles embedded in the scaffold of nanoporous Silicon offer...
Integration of metal nanoparticle-dielectric films with silicon technology is emerging as a promisin...
Utilizing the localized surface plasmon resonance (LSPR) effect of metallic nanoparticles enables th...
We report on a wet none thermal integration of the binary silicon-gold nano system. Instead of therm...
Nanophotonics deals with the interaction of light with matter in nanometer scale. One of the subsets...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...
Coupling between nanoplasmonics and semiconducting materials can enhance and complement the efficien...
Coupling between nanoplasmonics and semiconducting materials can enhance and complement the efficien...
Colored nanoporous silicon thin films were employed as dielectric spacing layers for the enhancement...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
Colored porous silicon as support for plasmonic nanoparticles M. Lublow,1,2,a S. Kubala,1,2 J. F. ...
The intersection of silicon technology with the rapidly growing field of nanoplasmonics, provides a ...
Localized surface plasmons (LSP) can be excited in metal nanoparticles (NP) by UV, visible or NIR li...
A composite material of plasmonic nanoparticles embedded in the scaffold of nanoporous Silicon offer...
Integration of metal nanoparticle-dielectric films with silicon technology is emerging as a promisin...
Utilizing the localized surface plasmon resonance (LSPR) effect of metallic nanoparticles enables th...
We report on a wet none thermal integration of the binary silicon-gold nano system. Instead of therm...
Nanophotonics deals with the interaction of light with matter in nanometer scale. One of the subsets...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...
International audienceUsing localized surface plasmon resonance (LSPR) as an optical probe we demons...