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A biodegradable solid polymer blend films of PVA (50)/ PVP (50) filled with Yb(NO3)2 were prepared by solution casting technique. The degree of amorphosity of the polymer blend composites was increased by the incorporation of filler into the polymer blend matrix. The decrease in the optical energy gap values was observed with the addition of filler which is illustrated by UV-Vis studies, indicating the interaction of filler with polymer blend matrix. With the temperature increase, the value of dielectric constant was found to increase depicting the more polar nature of polymer matrix. The tangent loss spectra of the samples showed a broad peak which confirms the presence of relaxing dipoles in the polymer composites.
Md. Mohsin Uddin Azad. 2018. \u201cImpact of Ytterbium Ion on Substantial Effects of Biodegradable Equal Mixture of Polymer Blend of PVA and PVP\u201d. Global Journal of Research in Engineering - C: Chemical Engineering GJRE-C Volume 18 (GJRE Volume 18 Issue C1): .
Crossref Journal DOI 10.17406/gjre
Print ISSN 0975-5861
e-ISSN 2249-4596
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Total Score: 102
Country: Bangladesh
Subject: Global Journal of Research in Engineering - C: Chemical Engineering
Authors: Md. Mohsin Uddin Azad, Md. Islamul Haque (PhD/Dr. count: 0)
View Count (all-time): 202
Total Views (Real + Logic): 3287
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Publish Date: 2018 05, Tue
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A biodegradable solid polymer blend films of PVA (50)/ PVP (50) filled with Yb(NO3)2 were prepared by solution casting technique. The degree of amorphosity of the polymer blend composites was increased by the incorporation of filler into the polymer blend matrix. The decrease in the optical energy gap values was observed with the addition of filler which is illustrated by UV-Vis studies, indicating the interaction of filler with polymer blend matrix. With the temperature increase, the value of dielectric constant was found to increase depicting the more polar nature of polymer matrix. The tangent loss spectra of the samples showed a broad peak which confirms the presence of relaxing dipoles in the polymer composites.
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