We demonstrate the fabrication of plasmonic sensors that comprise gold nanopillar arrays exhibiting high surface areas, and narrow gaps, through self-assembly of amphiphilic diblock copolymer micelles on silicon substrates. Silicon nanopillars with high integrity over arbitrary large areas are obtained using copolymer micelles as lithographic templates. The gaps between metal features are controlled by varying the thickness of the evaporated gold. The resulting gold metal nanopillar arrays exhibit an engineered surface topography, together with uniform and controlled separations down to sub-10 nm suitable for highly sensitive detection of molecular analytes by Surface Enhanced Raman Spectroscopy (SERS). The significance of the approach is d...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Wafer-scale surface-enhanced Raman scattering (SERS) substrates fabricated using maskless lithograph...
This work describes fabrication of three-dimensionally nano-textured silicon surface structures meta...
Periodic metal nanoparticle arrays possess electromagnetic properties useful for metamaterials, ligh...
Periodic metal nanostructure arrays possess electromagnetic properties useful for metamaterials, lig...
Wafer-scale surface-enhanced Raman scattering (SERS) substrates fabricated using maskless lithograph...
The 193 nm deep UV immersion lithography is leveraged to fabricate highly dense and uniform arrays o...
This paper reports a highly sensitive and selective surface-enhanced Raman spectroscopy (SERS) sensi...
The throughput and cost of surface-enhanced Raman scattering (SERS) substrates are considered the ma...
The fabrication of large areas of gold nanopillar arrays by combining nanosphere lithography and ele...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Nanopatterning is the fabrication of topologically and chemically patterned surfaces, with structur...
The advancement of SERS as an analytical tool requires substrates that provide both sensitive and re...
We introduce a simple but robust method to fabricate an ultrahigh-density array of silver nanocluste...
In our study, 2D nanopillar arrays with plasmonic crystal properties are optimized for surface-enhan...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Wafer-scale surface-enhanced Raman scattering (SERS) substrates fabricated using maskless lithograph...
This work describes fabrication of three-dimensionally nano-textured silicon surface structures meta...
Periodic metal nanoparticle arrays possess electromagnetic properties useful for metamaterials, ligh...
Periodic metal nanostructure arrays possess electromagnetic properties useful for metamaterials, lig...
Wafer-scale surface-enhanced Raman scattering (SERS) substrates fabricated using maskless lithograph...
The 193 nm deep UV immersion lithography is leveraged to fabricate highly dense and uniform arrays o...
This paper reports a highly sensitive and selective surface-enhanced Raman spectroscopy (SERS) sensi...
The throughput and cost of surface-enhanced Raman scattering (SERS) substrates are considered the ma...
The fabrication of large areas of gold nanopillar arrays by combining nanosphere lithography and ele...
Effective surface enhancement of Raman scattering (SERS) requires strong near-field enhancement as w...
Nanopatterning is the fabrication of topologically and chemically patterned surfaces, with structur...
The advancement of SERS as an analytical tool requires substrates that provide both sensitive and re...
We introduce a simple but robust method to fabricate an ultrahigh-density array of silver nanocluste...
In our study, 2D nanopillar arrays with plasmonic crystal properties are optimized for surface-enhan...
Near-field plasmonic coupling and local field enhancement in metal nanoarchitectures, such as arrang...
Wafer-scale surface-enhanced Raman scattering (SERS) substrates fabricated using maskless lithograph...
This work describes fabrication of three-dimensionally nano-textured silicon surface structures meta...