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https://doi.org/10.5772/58923

Silver Molybdate and Silver Tungstate Nanocomposites with Enhanced Photoluminescence

Yuri V. B. De Santana ; CDMF/INCTMN-UNESP, Universidade Estadual Paulista, Araraquara, Brazil
José Ernane Cardoso Gomes ; CDMF/INCTMN-UFSCar, Universidade Federal de São Carlos, São Carlos, Brazil
Leandro Matos ; CDMF/INCTMN-UFSCar, Universidade Federal de São Carlos, São Carlos, Brazil
Guilherme Henrique Cruvinel ; CDMF/INCTMN-UFSCar, Universidade Federal de São Carlos, São Carlos, Brazil
André Perrin ; Universite de Rennes 1, Rennes, France
Christiane Perrin ; Universite de Rennes 1, Rennes, France
Juan Andres ; Department of Experimental Sciences, Universitat Jaume I, Castellón, Spain
José A. Varela ; CDMF/INCTMN-UFSCar, Universidade Federal de São Carlos, São Carlos, Brazil
Elson Longo ; CDMF/INCTMN-UNESP, Universidade Estadual Paulista, Araraquara, Brazil


Puni tekst: engleski pdf 1.561 Kb

str. 4-22

preuzimanja: 882

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Sažetak

Silver molybdate (Ag2MoO4) and silver tungstate (Ag2WO4) nanomaterials were prepared using two complementary methods, microwave assisted hydrothermal synthesis (MAH) (pH 7, 140 °C) and coprecipitation (pH 4, 70 °C), and were then used to prepare two core/shell composites, namely α-Ag2WO4/β-Ag2MoO4 (MAH, pH 4, 140 °C) and β-Ag2MoO4/β-Ag2WO4 (coprecipitation, pH 4, 70 °C). The shape and size of the microcrystals were observed by field emission scanning electron microscopy (FE-SEM), different morphologies such as balls and nanorods. These powders were characterized by X-ray powder diffraction and UV-vis (diffuse reflectance and photoluminescence). X-ray diffraction patterns showed that the Ag2MoO4 samples obtained by the two methods were single-phased and belonged to the β-Ag2MoO4 structure (spinel type). In contrast, the Ag2WO4 obtained in the two syntheses were structurally different: MAH exhibited the well-known tetrameric stable structure α-Ag2WO4, while coprecipitation afforded the metastable β-Ag2WO4 allotrope, coexisting with a weak amount of the α-phase. The optical gap of β-Ag2WO4 (3.3 eV) was evaluated for the first time. In contrast to β-Ag2MoO4/β-Ag2WO4, the α- Ag2WO4/β-Ag2MoO4 exhibited strongly-enhanced photoluminescence in the low-energy band (650 nm), tentatively explained by the creation of a large density of local defects (distortions) at the core-shell interface, due to the presence of two different types of MOx polyhedra in the two structures.

Ključne riječi

silver molybdate; silver tungstate; photoluminescence; decorated system

Hrčak ID:

142634

URI

https://hrcak.srce.hr/142634

Datum izdavanja:

1.1.2014.

Posjeta: 1.436 *