Article ID Journal Published Year Pages File Type
1490083 Materials Research Bulletin 2012 6 Pages PDF
Abstract

Microstructure and optical properties of glass-nanocomposites of compositions xCdI2–(1 − x)(0.60Ag2O–0.40V2O5)(x = 0.0–0.20) have been reported in this paper. X-ray diffraction patterns show the amorphous nature for the compositions x = 0 and 0.05. However, nanocrystalline phases have been observed in these compositions in electron microscopic studies. X-ray diffraction and electron microscopic studies reveal formation of different nanocrystalline phases such as β-AgI, Cd2V2O7, Ag4V2O7 distributed within the amorphous matrix for the compositions x = 0.05–0.20. The presence of Cd2V2O7 and β-AgI phase for x = 0.05–0.20 confirms the exchange of coordination between Cd and Ag in these samples. The crystalline volume fraction increases with the increase of CdI2 content in these compositions. The average size of the nanocrystalline phases was estimated from the transmission and scanning electron microscopic studies. The network structure of the glass nanocomposites has been studied using Fourier transform infrared spectroscopy. Differential scanning calorimetric results show that the embedded nanocrystals decrease the glass transition temperature.

Graphical abstractTEM micrograph for 0.20CdI2–0.80(0.60Ag2O–0.40V2O5) and SAED pattern (shown right inset) from the selected area. High resolution image for a particle along with its FFT pattern is also shown in left inset.Figure optionsDownload full-size imageDownload as PowerPoint slideHighlights► CdI2 doped silver vanadate glass nanocomposites have been prepared. ► Microstructure of the compositions has been investigated. ► Nanocrystalline phases (β-AgI, Cd2V2O7, etc.) are distributed in the glass matrix. ► Volume fraction of these crystalline phases increases with increase of CdI2 content. ► Formation of Cd2V2O7 and β-AgI phase confirms the Cd–Ag exchange in the samples.

Related Topics
Physical Sciences and Engineering Materials Science Ceramics and Composites
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