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Physical properties of the organic polymeric blend (PVA/PAM) modified with MgO nanofillers

机译:用MgO纳米填充物改性有机聚合物共混物(PVA / PAM)的物理性质

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Magnesium oxide/polyvinyl alcohol/polyacrylamide (MgO/PVA/PAM) nanocomposite films were prepared via a solution chemical method. The effect of PVA and MgO nanoparticles (NPs) loading on the physical properties of PAM is discussed. X-ray diffraction reveals that the average MgO crystallite size of the NPs is similar to 25 nm, while adding PVA increases the crystallinity of PAM. FTIR spectra confirm the interaction between blend chains and MgO NPs. Differential scanning calorimetry thermograms illustrate the miscibility between the PVA and the PAM. The melting temperature, the glass transition, as well as the equilibrium swelling ratio, depend on the films' composition. PAM showed a transmittance of 87%, that increased to 90% after PVA addition, but decreased to 74% after MgO loading. Meaningful changes are observed in the extinction coefficient and indirect/direct band gap of PAM due to PVA blending and MgO addition. The influence of MgO NPs on the dielectric constant (e ') of the blend film is reported. The maximum value of AC conductivity of the blend is 4.77 x 10(-3) Sm-1, which increased to 8.07 x 10(-3) Sm-1 by increasing the MgO loading to 5.0 wt.%. The conduction mechanism changed from the correlated barrier hopping, in the blend, to the large Polaron tunneling with MgO loading. The observed improvements in optical properties and AC conductivity encourage the use of these nanocomposite films in the semiconductors industry.
机译:通过溶液化学方法制备氧化镁/聚乙烯醇/聚丙烯酰胺(MGO / PVA / PAM)纳米复合膜。讨论了PVA和MgO纳米颗粒(NPS)对PAM物理性质的影响。 X射线衍射表明,NP的平均MgO微晶尺寸类似于25nm,同时添加PVA增加了PAM的结晶度。 FTIR光谱证实了混合链和MgO NP之间的相互作用。差分扫描量热法热图说明了PVA和PAM之间的混溶性。熔化温度,玻璃过渡和平衡溶胀比取决于薄膜的组合物。 PAM显示透射率为87%,PVA加入后增加至90%,但在MgO负载后降至74%。由于PVA混合和MgO添加,在PAM的消光系数和间接/直接/直接带隙中观察到有意义的变化。报道了MgO NP对共混膜的介电常数(E')的影响。共混物的AC电导率的最大值是4.77×10( - 3)SM-1,通过将MgO负载增加至5.0重量%,增加至8.07×10(-3)SM-1。%。传导机制从与MgO负载的混合中的相关屏障跳跃变为大型偏振子隧道。所观察到的光学性质和交流电导率的改进促进了在半导体行业中使用这些纳米复合膜。

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