Controlling the plasmon resonance of single metal nanoparticles by near-field anisotropic nanoscale photopolymerization

We propose a new approach for tuning the Surface Plasmon (SP) resonance wavelength using hybrid nanoparticles. Our approach is based on nanoscale photopolymerization around metal nanoparticles. The enhanced optical near-field of silver nanoparticles triggers local photopolymerization. As a result, a...

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Veröffentlicht in:Journal of microscopy (Oxford) 2008-03, Vol.229 (3), p.421-427
Hauptverfasser: IBN-EL-AHRACH, H, BACHELOT, R, LÉRONDEL, G, VIAL, A, GRIMAULT, A.-S, PLAIN, J, ROYER, P, SOPPERA, O
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Sprache:eng
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Zusammenfassung:We propose a new approach for tuning the Surface Plasmon (SP) resonance wavelength using hybrid nanoparticles. Our approach is based on nanoscale photopolymerization around metal nanoparticles. The enhanced optical near-field of silver nanoparticles triggers local photopolymerization. As a result, atomic force microscopy reveals two nanoscale polymerized lobes around nanoparticles, with a controlled effective index distribution. A spectral breaking degeneracy of surface plasmon resonance of the nanoparticles has been demonstrated by polarized extinction spectroscopy.
ISSN:0022-2720
1365-2818
DOI:10.1111/j.1365-2818.2008.01922.x