Artículo
The spontaneous room temperature reduction of HAuCl4 in ethylene glycol in the presence of ZnO: A simple strategy to obtain stable Au/ZnO nanostructures exhibiting strong surface plasmon resonance and efficient electron storage properties
Aguirre, Matías Ezequiel
; Perelstein, Gonzalo Martín
; Feldhoff, Armin; Condo, Adriana Maria
; Tolley, Alfredo Juan
; Grela, Maria Alejandra
Fecha de publicación:
02/2015
Editorial:
Royal Society of Chemistry
Revista:
New Journal of Chemistry
ISSN:
1144-0546
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The room temperature spontaneous reduction of HAuCl4 in ethylene glycol in the presence of pre-formed ZnO nanoparticles is investigated by UV-vis spectroscopy. Analysis by HRTEM demonstrated that the synthesized nanostructures consist of small ZnO nanoparticles (5.0 nm) in contact with bigger (15 nm) spherical Au nanoparticles. The electronic communication between Au and ZnO blocks is confirmed by UV excitation of the colloid. These experiments indicate that ZnO nanoparticles efficiently transfer the electrons to Au nanoparticles in contact, inducing a 15 nm blue shift in the plasmon band. Titration experiments using the methylviologen couple (MV2+/MV+) are presented and analyzed to quantify the enhancement in the electron storage capability in the new nanostructure and the negative shift in the Fermi level caused by the Au loading in ZnO.
Palabras clave:
Synthesis
,
Metal/Semiconductor Nanocomposites
,
Plasmons
,
Fermi Level
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Colecciones
Articulos(CCT - MAR DEL PLATA)
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - MAR DEL PLATA
Articulos de CTRO.CIENTIFICO TECNOL.CONICET - MAR DEL PLATA
Citación
Aguirre, Matías Ezequiel; Perelstein, Gonzalo Martín; Feldhoff, Armin; Condo, Adriana Maria; Tolley, Alfredo Juan; et al.; The spontaneous room temperature reduction of HAuCl4 in ethylene glycol in the presence of ZnO: A simple strategy to obtain stable Au/ZnO nanostructures exhibiting strong surface plasmon resonance and efficient electron storage properties; Royal Society of Chemistry; New Journal of Chemistry; 39; 2; 2-2015; 909-914
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