Extraordinary transmittance in three dimensional crater, pyramid, and hole-array structures prepared through reversal imprinting of metal films.
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Summary
This RIM process allows the ready fabrication of various two- and three-dimensional metallic structures for use in surface plasmon-based devices and appears to be a promising material because of the unique properties imparted by the elongated and gradually tapering spacing of its cavities.
- Type
- article
- Published
- 2009-02-02
- Cited by
- 15
- References
- 22
- Access
- Open access
- OpenAlex
- https://openalex.org/W19188993
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16997852
Keywords
Psychology, Physics, Mathematics
References
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- Mimicking Surface Plasmons with Structured Surfaces
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- Surface plasmon resonance in two-dimensional nanobottle arrays.
- Light emission through a corrugated metal film: The role of cross-coupled surface plasmon polaritons
- High sensitivity of surface plasmon of weakly-distorted metallic surfaces.
- Energy Transfer Across a Metal Film Mediated by Surface Plasmon Polaritons
- Surface-plasmon-assisted resonant tunneling of light through a periodically corrugated thin metal film.
- Study of the surface plasma transmission properties of a Fabry–Perot resonator by numerical simulation
- Three-Dimensional Metal Patterning over Nanostructures by Reversal Imprint
- Surface-plasmon enhanced transparent electrodes in organic photovoltaics
- Three-Dimensional and Multilayer Nanostructures Formed by Nanotransfer Printing
- Surface plasmon resonance imaging measurements of ultrathin organic films.
- Electrical Contacts to Molecular Layers by Nanotransfer Printing
- Resonance and extraordinary transmission in annular aperture arrays.
Cited by
- Modal analysis of metallic screen with finite conductivity perforated by array of subwavelength rectangular flared holes.
- Improved Adhesion of Gold Thin Films Evaporated on Polymer Resin: Applications for Sensing Surfaces and MEMS
- Use of Reversal Nanoimprinting of Nanoparticles to Prepare Flexible Waveguide Sensors Exhibiting Enhanced Scattering of the Surface Plasmon Resonance
- Enhanced optical transmission through asymmetric nanostructured gold films
- Structural symmetry of two-dimensional metallic arrays: Implications for surface plasmon excitations
- Nanoimprint technology for patterning functional materials and its applications
- Effects of Gold Film Morphology on Surface Plasmon Resonance Using Periodic P3HT:PMMA/Au Nanostructures on Silicon Substrate for Surface-Enhanced Raman Scattering
- Recent Progress in Design of Plasmonic Thin-Film Solar Cells with Enhanced Efficiency
- Nanoimprinting of Flexible Polycarbonate Sheets with a Flexible Polymer Mold and Application to Superhydrophobic Surfaces
- Improved Multispectral Antireflection and Sensing of Plasmonic Slits by Silver Mirror
- Food Quality Monitor: Paper-Based Plasmonic Sensors Prepared Through Reversal Nanoimprinting for Rapid Detection of Biogenic Amine Odorants.
- Enhanced infrared transmission through subwavelength hole arrays in a thin gold film mounted with dielectric micro-domes
- Characterization of extraordinary transmission through conducting screens pierced by arrays of rectangular flared holes for quantitative comparison among various taper profiles and study of metal losses
- Fabrication of polarization colour filter device via direct Au film imprinting
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