Plasmonic Enhancement

Plasmonic enhancement is the amplification of electromagnetic fields and light-driven interactions near metallic nanostructures, a phenomenon that increases the sensitivity of chemical measurements. When incident light matches the collective oscillation of conduction electrons, localized surface plasmon resonance concentrates energy at the metal surface, creating intense near fields that interact with nearby molecules. This effect supports surface-enhanced Raman spectroscopy, enhanced fluorescence, and plasmon-assisted photocatalysis by strengthening molecular signals or promoting photochemical reactions. In chemistry, plasmonic enhancement enables trace analysis, improves sensor performance, and provides a means to control light-matter interactions at the nanoscale.

Plasmonic Enhancement - Related Videos

Research

JoVE Journal - Engineering

Polycrystalline Silicon Thin-film Solar cells with Plasmonic-enhanced Light-trapping

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Cited by 9 •

2012

Polycrystalline silicon thin-film solar cells on glass are fabricated by deposition of boron and phosphorous doped silicon layers followed by crystallisation, defect passivation and metallisation. Plasmonic light-trapping is introduced by forming Ag nanoparticles on the silicon cell surface capped with a diffused reflector resulting in ~45% photocurrent enhancement.

Utilization of Plasmonic and Photonic Crystal Nanostructures for Enhanced Micro- and Nanoparticle Manipulation

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2011

Plasmonic tweezers and photonic crystal nanostructures are shown to produce useful enhancements in the efficiency and orientation control of optically trapping micro- and nano-particles.

Research

JoVE Journal - Engineering
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Colloidal Synthesis of Nanopatch Antennas for Applications in Plasmonics and Nanophotonics

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Cited by 14 •

2016

A protocol for the colloidal synthesis of silver nanocubes and fabrication of plasmonic nanoscale patch antennas with sub-10 nm gaps is presented.

Education

JoVE Science Education - Chemistry

Surface Plasmon Resonance (SPR)

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2023

Surface plasmon resonance (SPR) is the underlying optical phenomenon behind label-free biosensors to evaluate the molecular affinity, kinetics, specificity, and concentration of biomolecules. In SPR, biomolecular interactions occur on a biosensor made of a thin layer of metal on a prism. Real-time interactions of biomolecules can be monitored by measuring the changes of light reflected off the underside of the metal. This video describes the basic concepts of SPR and how it is used to analyze...

Design, Fabrication, and Experimental Characterization of Plasmonic Photoconductive Terahertz Emitters

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Cited by 9 •

2013

We describe methods for the design, fabrication, and experimental characterization of plasmonic photoconductive emitters, which offer two orders of magnitude higher terahertz power levels compared to conventional photoconductive emitters.

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