2022
DOI: 10.15330/pcss.23.4.785-792
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Fabrication and Tailored Structural and Dielectric characteristics of (SrTiO3/ NiO ) Nanostructure Doped (PEO/PVA) polymeric Blend for Electronics Fields

Abstract: Films are prepared from (PEO/PVA) blend with various ratios of (SrTiO3/NiO) by using casting method. SEM images of (PEO/PVA/SrTiO3/NiO) nanocomposites show that many aggregates or chunks on the upper surface that are homogeneous and coherent. The (PEO/PVA/SrTiO3/NiO) nanocomposites contribute to tiny vibrational molecular movement, according to the (FTIR) analysis. Several polymer chains were also disrupted once (SrTiO3/NiO)  nanoparticles were introduced. Instead, several additional chains were produced. Diel… Show more

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Cited by 49 publications
(7 citation statements)
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“…At low frequencies, the amount of mobile ions and electrical conductivity decreased due to increased charge accumulation at the electrode and electrolyte interface [42][43][44]. Because charge carriers moved more easily at high frequencies, the electrical conductivity of PMMA/Si 3 N 4 /TaC nanocomposites increases with frequency [45][46][47]. Figure (9) reveals that the electrical conductivity of nanocomposites rises with the rising of Si 3 N 4 /TaC nanoparticle content due to rise in the ionic charge carriers and the formation of a continuous network of Si 3 N 4 /TaC nanoparticles inside polymer matrix [48][49][50].…”
Section: Resultsmentioning
confidence: 99%
“…At low frequencies, the amount of mobile ions and electrical conductivity decreased due to increased charge accumulation at the electrode and electrolyte interface [42][43][44]. Because charge carriers moved more easily at high frequencies, the electrical conductivity of PMMA/Si 3 N 4 /TaC nanocomposites increases with frequency [45][46][47]. Figure (9) reveals that the electrical conductivity of nanocomposites rises with the rising of Si 3 N 4 /TaC nanoparticle content due to rise in the ionic charge carriers and the formation of a continuous network of Si 3 N 4 /TaC nanoparticles inside polymer matrix [48][49][50].…”
Section: Resultsmentioning
confidence: 99%
“…Figure 1 shows the effect of adding the MnO 2 -ZrO 2 nanoparticles on the dielectric constant of PVA, the dielectric constant increases with increasing of the concentration of MnO 2 -ZrO 2 nanoparticles; the reason for this increase is the formation of a clusters of MnO 2 -ZrO 2 nanoparticles inside the nanocomposites at low concentrations of MnO 2 -ZrO 2 nanoparticles; hence, the dielectric constant becomes low, and at high concentrations of MnO 2 -ZrO 2 nanoparticles, a continuous network inside the nanocomposites is formed, and so, the value of dielectric constant increases with increasing of MnO 2 -ZrO 2 nanoparticles' concentration [22][23][24][25][26][27][28][29]. The variation of dielectric constant of PVA-MnO 2 -ZrO 2 nanocomposites with frequency F are shown in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…All nanocomposites show that low absorbance in the visible region. This behaviour can be explained as to interact with atoms, thus, the photon will be transmitted [23,24]. If the wavelength decreases, the interaction between incident photon and material will occur, and the photon will be absorbed; the absorbance increases with increasing of weight percentages of the nanomaterials.…”
Section: Absorbance and Transmittancementioning
confidence: 99%