Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties

Polymer composites are widely used in electrical devices, sensor materials, electromagnetic interference (EMI) shielding, and other applications. Composites may be customized for any intended application by changing the ratios of the polymeric components. Polyaniline (PANI) is not as sensitive as me...

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Main Authors: K.B. SATHISH KUMAR, Raghavendra SUBRAMANYA, S.S. PRABHAKARA
Format: Article
Language:English
Published: Mouloud Mammeri University of Tizi-Ouzou 2023-03-01
Series:Journal of Materials and Engineering Structures
Subjects:
Online Access:https://revue.ummto.dz/index.php/JMES/article/view/3244
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author K.B. SATHISH KUMAR
Raghavendra SUBRAMANYA
S.S. PRABHAKARA
author_facet K.B. SATHISH KUMAR
Raghavendra SUBRAMANYA
S.S. PRABHAKARA
author_sort K.B. SATHISH KUMAR
collection DOAJ
description Polymer composites are widely used in electrical devices, sensor materials, electromagnetic interference (EMI) shielding, and other applications. Composites may be customized for any intended application by changing the ratios of the polymeric components. Polyaniline (PANI) is not as sensitive as metal oxides toward gasoline species, and its negative solubility in organic solvents limits its packages, however it's miles suitable as a matrix for instruction of engaging in polymer nanocomposites. Therefore, there has been increasing hobby of the researchers for the education of Nano composites based totally on PANI The fuel for the production of nanometal oxide comes from naturally occurring sources. The weight percentages of such generated metal oxides are altered during chemical polymerization with polyaniline. Composites of polyaniline cellulose and varying weight ratios of Zinc oxide (ZnO) are produced. In synthesised Polyaniline cellulose/ZnO composites, the formation of polymers and their interactions with metal oxides are investigated using Ultraviolet (UV)-vis, Fourier-transform infrared spectroscopy (FTIR), and X Ray Diffraction. The surface morphology of the composites is studied using Scanning electron Microscopy. The characteristics of the specified composites are investigated using electrical dc conductivity electrical conductivity.
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spelling doaj.art-bcb7c5c72a1f47b2ac46141387f9473d2023-08-12T15:46:55ZengMouloud Mammeri University of Tizi-OuzouJournal of Materials and Engineering Structures2170-127X2023-03-011011311392157Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity propertiesK.B. SATHISH KUMAR0Raghavendra SUBRAMANYA1S.S. PRABHAKARA2Department of Chemistry, Acharya graduate Studies, BanagaloreSai Vidya Institute of Technology,Bangalore IndiaDepartment of Mechanical engineering, Don Bosco Institute of Technology, BangalorePolymer composites are widely used in electrical devices, sensor materials, electromagnetic interference (EMI) shielding, and other applications. Composites may be customized for any intended application by changing the ratios of the polymeric components. Polyaniline (PANI) is not as sensitive as metal oxides toward gasoline species, and its negative solubility in organic solvents limits its packages, however it's miles suitable as a matrix for instruction of engaging in polymer nanocomposites. Therefore, there has been increasing hobby of the researchers for the education of Nano composites based totally on PANI The fuel for the production of nanometal oxide comes from naturally occurring sources. The weight percentages of such generated metal oxides are altered during chemical polymerization with polyaniline. Composites of polyaniline cellulose and varying weight ratios of Zinc oxide (ZnO) are produced. In synthesised Polyaniline cellulose/ZnO composites, the formation of polymers and their interactions with metal oxides are investigated using Ultraviolet (UV)-vis, Fourier-transform infrared spectroscopy (FTIR), and X Ray Diffraction. The surface morphology of the composites is studied using Scanning electron Microscopy. The characteristics of the specified composites are investigated using electrical dc conductivity electrical conductivity.https://revue.ummto.dz/index.php/JMES/article/view/3244polyanilinecellulosezinc oxideelectrical conductivityscanning electron microscopy
spellingShingle K.B. SATHISH KUMAR
Raghavendra SUBRAMANYA
S.S. PRABHAKARA
Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
Journal of Materials and Engineering Structures
polyaniline
cellulose
zinc oxide
electrical conductivity
scanning electron microscopy
title Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
title_full Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
title_fullStr Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
title_full_unstemmed Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
title_short Synthesis, characterization of Zinc oxide and assessment of electrical DC conductivity properties
title_sort synthesis characterization of zinc oxide and assessment of electrical dc conductivity properties
topic polyaniline
cellulose
zinc oxide
electrical conductivity
scanning electron microscopy
url https://revue.ummto.dz/index.php/JMES/article/view/3244
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AT raghavendrasubramanya synthesischaracterizationofzincoxideandassessmentofelectricaldcconductivityproperties
AT ssprabhakara synthesischaracterizationofzincoxideandassessmentofelectricaldcconductivityproperties