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We know that the THz absorption in the Au/PS nanosphere array is mainly induced by the surface plasmon resonance and the absorption frequency is determined mainly by the surface plasmon frequency.
This enhancement is attributed to photon scattering and trapping by the surface plasmon generated in the metallic nanoparticles.
Accordingly, the synergy of charge separation and hole transfer could be efficiently improved by the surface plasmon excitation on Au nanoparticles.
The non-linear properties of nanocomposite glasses equipped with such particles are induced by the surface plasmon resonance at the interface between particles and glass matrix.
These enhancements concerning light absorption in the visible region can be explained by the surface plasmon polariton resonance of metallic nanoparticles in the gold nanofilm.
It is believed that absorption of light by metal nanoparticles is dominated by the surface plasmon (SP) resonance changing both the static and dynamic optical properties.
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This work reports the color-tunable mixed photoluminescence (PL) emission from an Alq3 organic layer in an Au-Alq3-Au plasmonic structure through the combination of organic fluorescence emission and another form of emission that is enabled by the surface plasmons in the plasmonic structure.
UV-visible spectroscopy data determined the formation of Ag-NPs by observing the surface plasmon resonance (SPR) bands.
The formation of nanoparticles was first monitored by measuring the surface plasmon resonance (SPR) band at 410 nm through UV Visible absorption spectroscopy.
The formation of Ag-NPs was followed by measuring the surface plasmon resonance (SPR) of the A. elasticus and Ag/A.
Therefore, it is accordingly hopeful to construct novel structured α-Fe2O3 electrode with high solar-to-hydrogen efficiency by integrating the surface plasmon resonance and surface passivation on α-Fe2O3.
More suggestions(16)
by the surface functionalization
by the surface mobility
by the surface interaction
by the surface area
by the surface displacement
by the surface friction
by the surface flatness
by the surface hydrophilicity
by the surface scar
by the surface probe
by the surface accelerogram
by the gap plasmon
by the surface wettability
by the surface team
by the surface frivolity
by the surface contact
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