(Figure Presented) SiO nanowires gain scientific and technological interest in application fields ranging from nano-electronics, optics and photonics to bio-sensing. Furthermore, the SiO nanowires chemical and physical properties, and so their performances in devices, can be enhanced if decorated by metal nanoparticles (such Au) due to local plasmonic effects. In the present paper, we propose a simple, low-cost and high-throughput three-steps methodology for the mass-production of Au nanoparticles coated SiO nanowires. It is based on (1) production of the SiO nanowires on Si surface by solid state reaction of an Au film with the Si substrate at high temperature; (2) sputtering deposition of Au on the SiO nanowires to obtain the nanowires coated by an Au film; and (3) furnace annealing processes to induce the Au film dewetting on the SiO nanowires surface. Using scanning electron microscopy analyses, we followed the change of the Au nanoparticles mean versus the annealing time extracting values for the characteristic activation energy of the dewetting process of the Au film on the SiO nanowires surface. Such a study can allow the tuning of the nanowires/nanoparticles sizes for desired technological applications.

Dewetting process of Au films on SiO2 nanowires: Activation energy evaluation

Ruffino F;
2015

Abstract

(Figure Presented) SiO nanowires gain scientific and technological interest in application fields ranging from nano-electronics, optics and photonics to bio-sensing. Furthermore, the SiO nanowires chemical and physical properties, and so their performances in devices, can be enhanced if decorated by metal nanoparticles (such Au) due to local plasmonic effects. In the present paper, we propose a simple, low-cost and high-throughput three-steps methodology for the mass-production of Au nanoparticles coated SiO nanowires. It is based on (1) production of the SiO nanowires on Si surface by solid state reaction of an Au film with the Si substrate at high temperature; (2) sputtering deposition of Au on the SiO nanowires to obtain the nanowires coated by an Au film; and (3) furnace annealing processes to induce the Au film dewetting on the SiO nanowires surface. Using scanning electron microscopy analyses, we followed the change of the Au nanoparticles mean versus the annealing time extracting values for the characteristic activation energy of the dewetting process of the Au film on the SiO nanowires surface. Such a study can allow the tuning of the nanowires/nanoparticles sizes for desired technological applications.
2015
Inglese
69
121
126
http://www.scopus.com/record/display.url?eid=2-s2.0-84921983347&origin=inward
Sì, ma tipo non specificato
Activation energy
Au nanoparticles
Dewetting
SiO nanowires 2
Sputtering deposition
1
info:eu-repo/semantics/article
262
Ruffino, F.; Grimaldi, M. G.
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/427612
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