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Plasmonic Effect of Metal Nanoparticles Deposited on Wide-Band Gap Metal Oxide Nanowire Substrate
Frontiers | Ultrafast Plasmonic Optical Switching Structures and Devices
Theoretical calculations for localized surface plasmon resonance effects of Cu/TiO2 nanosphere: Generation, modulation, and application in photocatalysis - ScienceDirect
Rational Design of Plasmonic Metal Nanostructures for Solar Energy Conversion | CCS Chem
Hot” in Plasmonics: Temperature‐Related Concepts and Applications of Metal Nanostructures - Kuppe - 2020 - Advanced Optical Materials - Wiley Online Library
Understanding Plasmon and Band Gap Photoexcitation Effects on the Thermal-Catalytic Oxidation of Ethanol by TiO2-Supported Gold | ACS Catalysis
Relation between SPR and Band Gap of Nanoparticles? | ResearchGate
Frontiers | Harnessing Plasmon-Induced Hot Carriers at the Interfaces With Ferroelectrics
Strong mode coupling-enabled hybrid photon-plasmon laser with a microfiber-coupled nanorod | Science Advances
Band Alignments, Band Gap, Core Levels, and Valence Band States in Cu3BiS3 for Photovoltaics | ACS Applied Materials & Interfaces
Plasmonic photonic crystal with a complete band gap for surface plasmon polariton waves: Applied Physics Letters: Vol 93, No 23
Characterization of the surface plasmon polariton band gap in an Ag/SiO2/Ag T-shaped periodical structure
Surface plasmon - Wikipedia
Electronic properties of plasmonic and catalytic metals. (a,b)... | Download Scientific Diagram
A) Localized surface plasmon for a spherical gold nanoparticle. 42... | Download Scientific Diagram
Plasmonic gold nanostructures for biosensing and bioimaging | SpringerLink
Metal-coated microsphere monolayers as surface plasmon resonance sensors operating in both transmission and reflection modes | Scientific Reports
Gap surface plasmon - Wikipedia
Origins of Contrast | What is CL?
Dual Photocatalytic Roles of Light: Charge Separation at the Band Gap and Heat via Localized Surface Plasmon Resonance To Convert CO2 into CO over Silver–Zirconium Oxide | Journal of the American Chemical
Dynamic plasmonic color generation enabled by functional materials | Science Advances