首页|Radiation induced effect on structural and dielectric properties of polyaniline incorporation into polyvinylidene fluoride/barium titanate ternary composites

Radiation induced effect on structural and dielectric properties of polyaniline incorporation into polyvinylidene fluoride/barium titanate ternary composites

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? 2022 Elsevier B.V.The solution casting approach was used to successfully manufacture polyvinylidene fluoride-barium titanate (PVDF-BT) films doped with varied ratios of polyaniline (PANI) (0, 0.5, 1, 2% wt.). The structural and dielectric properties of different prepared films and a selected film irradiated with 0, 10, 20, and 30 kGy from an electron beam accelerator (EB) are investigated. Incorporating PANI into PVDF-BT resulted in a higher β-phase, as evidenced by XRD and FTIR. Besides the amorphization of BT particles inside the irradiated film, EB induces the transition of α-phases into β-phases. Adding PANI, the dielectric constant (ε‘) and loss tangent (tanδ) of the PVDF-BT composites increased. In contrast, EB irradiation causes a reduction of ε‘and tanδ values of the irradiated sample. Because of the reduced polarization level, the ac conductivity (σac) rose with increasing PANI content in PVDF-BT composite, but it decreased with increasing EB doses. Furthermore, adding PANI to PVDF-BT composite and irradiating with EB generated structural alterations in the material. Incorporating PANI into PVDF-BT and EB irradiation decreased mobile ions and lattice strain inside samples.

Barium titanateDielectricElectron beamPolyanilinePolyvinylidene fluoride

Atta M.M.、El-Bayoumi A.S.、Ahmed R.M.、El Al S.A.

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Radiation Physics Department National Center for Radiation Research and Technology (NCRRT) Egyptian Atomic Energy Authority

Physics Department Faculty of Science Zagazig University

Qassim University Faculty of Science and Art

2022

Synthetic Metals

Synthetic Metals

EISCI
ISSN:0379-6779
年,卷(期):2022.290
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