Abstract
Blended polymer films of polyethylene oxide + polyvinyl pyrrolidone (PEO+PVP) containing transition metal (TM) ions like Fe3+, Co2+ and Ni2+ have been synthesized by a solution casting method. For these films, structural, thermal, magnetic and optical properties have been studied. X-ray diffraction results reveal the semicrystalline nature of the polymer films. Thermal stability of the host (undoped) polymer film has been investigated from its thermogravimetric-differential thermal analysis profiles. Raman spectral profiles indicate a complex formation trend owing to the addition of TM ions into the host matrix. Co2+, Fe3+ and Ni2+ ions doped polymer films have revealed ferromagnetism based on their vibrating sample magnetometre profiles. However, the host polymer film has exhibited a paramagnetic nature. Further, ionic conductivities have been calculated using an impedance analyser at differenttemperatures for all the samples. Among these films, amaximumionic conductivity (σ = 7.5 × 10-6 S cm-1) has been noticed from PEO + PVP : Ni2+ polymer film at 373 K. Emission analysis of Co2+: PEO + PVP polymer film has exhibited a strong red emission under an UV source and from both PEO + PVP : Fe3+; PEO + PVP: Ni2+, green emissions have commonly been noticed under an UV source. Thus, based on these results, it could be suggested that these TM ions doped PEO + PVP polymer films are found to be potential multifunctional materials for magneto-electric, magneto-optic fields with encouraging electrical, dielectric and optical properties as well as displaying with ferromagnetic nature from the doped films.
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Kumar, K. N., Reddy, M. V., Vijayalakshmi, L., & Ratnakaram, Y. C. (2015). Synthesis and analysis of Fe3+, Co2+ and Ni2+: PEO+ PVP blended polymer composite films for multifunctional polymer applications. Bulletin of Materials Science, 38(4), 1015–1023. https://doi.org/10.1007/s12034-015-0925-9
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