Enhanced reactivity and related optical changes of Ag nanoparticles on amorphous Al2O3 supports

Pairs of samples containing Ag nanoparticles (NPs) of different dimensions have been produced under the same conditions but on different substrates, namely standard glass slides and a thin layer of amorphous aluminum oxide (a-Al2O3) on-glass. Upon storage in ambient conditions (air and room temperat...

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Veröffentlicht in:Nanotechnology 2013-09, Vol.24 (36), p.365702-365702
Hauptverfasser: Peláez, R J, Castelo, A, Afonso, C N, Borrás, A, Espinós, J P, Riedel, S, Leiderer, P, Boneberg, J
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Sprache:eng
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Zusammenfassung:Pairs of samples containing Ag nanoparticles (NPs) of different dimensions have been produced under the same conditions but on different substrates, namely standard glass slides and a thin layer of amorphous aluminum oxide (a-Al2O3) on-glass. Upon storage in ambient conditions (air and room temperature) the color of samples changed and a blue-shift and damping of the surface plasmon resonance was observed. The changes are weaker for the samples on-glass and tend to saturate after 12 months. In contrast, the changes for the samples on a-Al2O3 appear to be still progressing after 25 months. While x-ray photoelectron spectroscopy shows a slight sulfurization and negligible oxidation of the Ag for the on-glass samples upon 25 months aging, it shows that Ag is strongly oxidized for the on a-Al2O3 samples and sulfurization is negligible. Both optical and chemical results are consistent with the production of a shell at the expense of a reduction of the metal core dimensions, the latter being responsible for the blue-shift and related to the small (
ISSN:0957-4484
1361-6528
DOI:10.1088/0957-4484/24/36/365702