Quantum effects in the plasmon response of bimetallic core-shell nanostructures.
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Summary
A quantum mechanical study of the plasmonic response of bimetallic spherical core/shell nanoparticles and it is shown that for shell widths in the nanometer range, the system cannot be described as a simple stack of two metals.
- Type
- article
- Published
- 2016-10-17
- Cited by
- 5
- References
- 80
- Access
- Open access
- OpenAlex
- https://openalex.org/W2529326138
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27742774
Keywords
Plasmon, Bimetallic strip, Materials science, Surface plasmon resonance, Shell (structure)
References
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- Antennas for light
- Plasmon resonances in large noble-metal clusters
- Performance of nonlocal optics when applied to plasmonic nanostructures
- The physics of simple metal clusters: self-consistent jellium model and semiclassical approaches
- Image potential states on metal surfaces: binding energies and wave functions
- Looking from both sides
- Reducing the symmetry of bimetallic Au@Ag nanoparticles by exploiting eccentric polymer shells.
- Optical Properties of Noble Metal Clusters as a Function of the Size: Comparison between Experiments and a Semi-Quantal Theory
- Competition between surface screening and size quantization for surface plasmons in nanoparticles
- Plasmonic nanoparticle arrays with nanometer separation for high-performance SERS substrates.
Cited by
- Probing role of shell thickness in the optical response of core-shell nanorods
- Bimetallic nanostructures: combining plasmonic and catalytic metals for photocatalysis
- Appropriate Nonlocal Hydrodynamic Models for the Characterization of Deep‐Nanometer Scale Plasmonic Scatterers
- Efficient Plasmon-Mediated Energy Funneling to the Surface of Au@Pt Core-Shell Nanocrystals.
- Mixed atomistic-implicit quantum/classical approach to molecular nanoplasmonics.
- Hot Carrier Assisted Plasmonic Photocatalysis
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