UE-INN   27105
UNIDAD EJECUTORA INSTITUTO DE NANOCIENCIA Y NANOTECNOLOGIA
Unidad Ejecutora - UE
artículos
Título:
Microscopic Electrochemical Control of Ag Nanoparticles into Mesoporous TiO 2 Thin Films
Autor/es:
LINARES MOREAU, M.M.; ZELCER, A.; LEVY, P.E.; LINARES MOREAU, M.M.; ZELCER, A.; LEVY, P.E.; MARTÍNEZ, E.D.; GOLMAR, F.; SOLER ILLIA, G.J.A.A.; MARTÍNEZ, E.D.; GOLMAR, F.; SOLER ILLIA, G.J.A.A.; FUERTES, M.C.; GRANELL, P.N.; GRANJA, L.P.; FUERTES, M.C.; GRANELL, P.N.; GRANJA, L.P.
Revista:
JOURNAL OF PHYSICAL CHEMISTRY C
Editorial:
AMER CHEMICAL SOC
Referencias:
Lugar: Washington; Año: 2019 vol. 123 p. 3579 - 3587
ISSN:
1932-7447
Resumen:
Conductive-tip atomic force microscopy (CAFM) was used to explore the effects of high electric fields on silver nanoparticle (NP) arrays embedded inside the pores of mesoporous TiO 2 thin films (MTF). A controlled local modification of the distribution of Ag nanoparticles inside the MTF and their electronic transport properties was carried out. The process is driven by strong electrochemically induced Ag + migration and reduction inside the pores localized around the CAFM tip. Depending on the experimental parameters, we were able to induce drastic and violent changes, both at the surface and at the MTF/Si interface, that is, through the whole scanned region. Therefore, the results reported in this work contribute to the design and development of novel metal NP-based devices at the micro- and nanoscale.