Artículo
Structure, configuration, and sizing of Ni nanoparticles generated by ultrafast laser ablation in different media
Muñetón Arboleda, David
; Santillán, Jesica María José
; Mendoza Herrera, Luis Joaquin
; Fernandez Van Raap, Marcela Beatriz
; Muraca, Diego
; Schinca, D. C.; Scaffardi, Lucia Beatriz
Fecha de publicación:
08/2015
Editorial:
Spie
Revista:
Spie
ISSN:
0277-786X
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In recent years, nickel nanoparticles (NPs) have increased scientific interest because of their extensive prospects in catalysts, information storage, large-scale batteries and biomedicine. Several works on Ni NPs generation by laser ablation have appeared in the literature in the last years, using different pulsed laser regimes and different media have been published recently. In this work we analyze the characteristics of species, structure (bare core or core-shell), configuration and size distribution of NPs generated by fs pulse laser ablation over a Ni solid target in n-heptane and water. We explore the presence of NiO-Ni core-shell and hollow Ni (or air-Ni) NPs in the colloids obtained. These were experimentally characterized using AFM and TEM microscopy, as well as Optical Extinction Spectroscopy (OES). Extinction spectra were modeled using Mie theory through an appropriate modification of the complex experimental dielectric function, taking into account a size-dependent corrective term for each free and bound electron contribution. Experimental UVvisible-NIR spectra were reproduced considering a size distribution of bare core, hollow and core-shell structures NPs. In both media, Ni NPs shape and size distribution agrees with that derived from TEM and AFM analysis.
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Identificadores
Colecciones
Articulos(CIOP)
Articulos de CENTRO DE INVEST.OPTICAS (I)
Articulos de CENTRO DE INVEST.OPTICAS (I)
Citación
Muñetón Arboleda, David; Santillán, Jesica María José; Mendoza Herrera, Luis Joaquin; Fernandez Van Raap, Marcela Beatriz; Muraca, Diego; et al.; Structure, configuration, and sizing of Ni nanoparticles generated by ultrafast laser ablation in different media; Spie; Spie; 9547; 8-2015; 1-9; 95473J-1
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