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The present work is focused on exploring the PANI/PbO and PANI/Ta2O5 based composites for microwave absorbing applications. Here, different compositions of PANI/PbO and PANI/Ta2O5 composites were synthesized by wet chemical routes. The structural details were carried out by using TG/DTA, XRD, FT-IR, FE-SEM with EDX etc. Then the AC, DC conductivity studies, Dielectric loss and Dielectric constant were calculated by using impedance spectroscopy. Simultaneously, we understand and contribute to the basic material/ polymer chemistry aspects of doped PANI based composites in general.

Produktbeschreibung
The present work is focused on exploring the PANI/PbO and PANI/Ta2O5 based composites for microwave absorbing applications. Here, different compositions of PANI/PbO and PANI/Ta2O5 composites were synthesized by wet chemical routes. The structural details were carried out by using TG/DTA, XRD, FT-IR, FE-SEM with EDX etc. Then the AC, DC conductivity studies, Dielectric loss and Dielectric constant were calculated by using impedance spectroscopy. Simultaneously, we understand and contribute to the basic material/ polymer chemistry aspects of doped PANI based composites in general.
Autorenporträt
Dr. Nagajyoti H. is an Assistant Professor, in the Department of Physics, at Government College Autonomous, Kalaburagi, Karnataka India. She was awarded Ph.D. from Visvesvaraya Technological University (VTU) Belgaum in 2023. Her research interest focused on exploring the PANI/PbO and PANI/Ta2O5-based composites for microwave-absorbing applications.