Multiferroic thick nanocomposite films of (1 − x)(0.3CoFe2O4-0.7BiFeO3)-xPolyvinylidene difluoride (CFO-BFO/PVDF) with x variations 0.20, 0.30 and 0.40 were synthesized using hot press method. Detailed measurements of structural, dielectric, magnetic and magnetoelectric data have been reported. Structural characterization reveals the presence of all the three distinct phases viz. CFO, BFO and PVDF. The dielectric loss as low as 0.05 has been observed for composite film with 40 mol% of PVDF. The AC conductivity (5.9 × 10−8 Ω−1 cm−1) of composite film (x = 0.40) is found to be much lower as compared to CFO-BFO ceramic. The electric poling of composite film (with x = 0.30) leads to substantial increase in saturation (2Ms) and remnant magnetization (2Mr). A significant magnetoelectric effect with magnetoelectric voltage coefficient (αME) ∼ 22.128 mV/cm Oe has been observed for composite film with x = 0.40, which is possibly a consequence of implicit mechanical interaction between CFO and BFO through PVDF matrix. Hence these nanocomposite films hold a great potential to be promising candidates for multiferroic devices

Multiferroic and magnetoelectric properties of BiFeO3-CoFe2O4-poly(vinylidene-flouride) composite films

TRUCCATO, Marco;BATTIATO, ALFIO;VITTONE, Ettore
Last
2017-01-01

Abstract

Multiferroic thick nanocomposite films of (1 − x)(0.3CoFe2O4-0.7BiFeO3)-xPolyvinylidene difluoride (CFO-BFO/PVDF) with x variations 0.20, 0.30 and 0.40 were synthesized using hot press method. Detailed measurements of structural, dielectric, magnetic and magnetoelectric data have been reported. Structural characterization reveals the presence of all the three distinct phases viz. CFO, BFO and PVDF. The dielectric loss as low as 0.05 has been observed for composite film with 40 mol% of PVDF. The AC conductivity (5.9 × 10−8 Ω−1 cm−1) of composite film (x = 0.40) is found to be much lower as compared to CFO-BFO ceramic. The electric poling of composite film (with x = 0.30) leads to substantial increase in saturation (2Ms) and remnant magnetization (2Mr). A significant magnetoelectric effect with magnetoelectric voltage coefficient (αME) ∼ 22.128 mV/cm Oe has been observed for composite film with x = 0.40, which is possibly a consequence of implicit mechanical interaction between CFO and BFO through PVDF matrix. Hence these nanocomposite films hold a great potential to be promising candidates for multiferroic devices
2017
91
100
110
Composite films; Dielectric response; Magnetic measurements; Magnetoelectric effect; Microstructure; Physics and Astronomy (all); Polymers and Plastics; Organic Chemistry
Adhlakha, Nidhi; Yadav, K.L; Truccato, Marco; Manjusha, Null; Rajak, Piu; Battiato, Alfio; Vittone, Ettore
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1637600
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