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Synthesis and Characterization of Pani/Silver Nanocomposites


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1 Department of Physics, Center of Postgraduate Studies, Jain University, Jayanagar, Bangalore, India
     

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Polyaniline/silver (PANI/Ag) nanocomposites were prepared by in-situ polymerization technique in the presence of silver nitrate using ammonium persulphate as an oxidizing agent. The wt% of silver is varied from 0 to 20%. The formations of Ag nanoparticles in these composites were assessed by X-ray diffraction analysis (XRD) and Field emission scanning electron microscope (FESEM). The XRD pattern shows the broadening of the peaks confirming the formation of nanocrystallites of silver. FESEM study also shows a nanoparticular structure for silver and it is also seen that these particles are well dispersed in the fibrillar network of polyaniline. UV-Visible spectrogram shows three peaks corresponding to one of silver and two of polyaniline in all the composites. Photoluminescence study shows that emission peak shifted towards blue when compared to that of bulk Ag and has a comparatively broad peak.

Keywords

Polyaniline/Silver Nanocomposites, Photoluminescence, FESEM.
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  • Synthesis and Characterization of Pani/Silver Nanocomposites

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Authors

Jayasudha Sriram
Department of Physics, Center of Postgraduate Studies, Jain University, Jayanagar, Bangalore, India
L. Priya
Department of Physics, Center of Postgraduate Studies, Jain University, Jayanagar, Bangalore, India
K. T. Vasudevan
Department of Physics, Center of Postgraduate Studies, Jain University, Jayanagar, Bangalore, India

Abstract


Polyaniline/silver (PANI/Ag) nanocomposites were prepared by in-situ polymerization technique in the presence of silver nitrate using ammonium persulphate as an oxidizing agent. The wt% of silver is varied from 0 to 20%. The formations of Ag nanoparticles in these composites were assessed by X-ray diffraction analysis (XRD) and Field emission scanning electron microscope (FESEM). The XRD pattern shows the broadening of the peaks confirming the formation of nanocrystallites of silver. FESEM study also shows a nanoparticular structure for silver and it is also seen that these particles are well dispersed in the fibrillar network of polyaniline. UV-Visible spectrogram shows three peaks corresponding to one of silver and two of polyaniline in all the composites. Photoluminescence study shows that emission peak shifted towards blue when compared to that of bulk Ag and has a comparatively broad peak.

Keywords


Polyaniline/Silver Nanocomposites, Photoluminescence, FESEM.