Synthesis and characterization of AgI-Ag2O-SeO2 glass-nanocomposites embedded with beta-AgI and Ag2SeO3 nanocrystals.

2010 
Glass-nanocomposites of compositions xAgI-(1-x)(0.40Ag 2 O-0.60SeO 2 ) for 0.15≤x≤0.30 were prepared by quenching the melt of the appropriate mixtures of the chemicals AgI, AgNO 3 and SeO 2 . Differential scanning calorimetry (DSC) was employed to determine the glass transition and crystallization temperatures. The as-prepared samples were heat-treated above glass transition temperature to observe the growth of nanoparticles. X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM) were used to explore the microstructure of these samples. These studies revealed the presence of β-AgI and Ag 2 SeO 3 nanocrystals in both the as-prepared and heat-treated samples. The particle size was found to decrease with the increase of AgI content in both cases. The heat-treated samples showed increased tendency of crystallization for the compositions with higher AgI content. The β-α phase transition of AgI crystals was observed at ~147-149°C for heat-treated samples. Fourier transform infrared (FTIR) spectra revealed that the basic structure of the glassy network remained invariant to change of AgI content as well as to heat-treatment.
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