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Structural, Optical, Electrical, and Magnetic Properties of PVA:Gd3+and PVA:Ho3+Polymer Films

机译:PVA:Gd3 +和PVA:Ho3 +聚合物薄膜的结构,光学,电和磁性能

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Polymer films of PVA:Gd3+and PVA:Ho3+have been synthesized by a solution casting method in order to study their structural, optical, electrical, and magnetic properties. The semicrystalline nature of the polymer films has been confirmed from XRD analysis. The FTIR analysis confirms the complex formation of the polymer with the metal ions. Dielectric studies of these films have also been carried out at various set temperatures in the frequency from 100 Hz to 1 MHz for carrying out impedance spectroscopy analysis to evaluate the electrical conductivity which arises due to a single conduction mechanism and thus to have a single semicircle pattern from these polymer films. The DC electrical conductivity increases with an increase in the temperature and it could be due to high mobility of free charges (polarons and free ions) at higher temperatures. The conductivity trend follows the Arrhenius equation for PVA:Gd3+and for PVA:Ho3+polymer films. PVA:Gd3+polymer films show ferromagnetic nature, and PVA:Ho3+polymer films have revealed paramagnetic nature based on the trends noticed in the magnetic characteristic profiles.
机译:为了研究其结构,光学,电学和磁学性质,已经通过溶液流延法合成了PVA:Gd3 +和PVA:Ho3 +的聚合物膜。聚合物膜的半结晶性质已经由XRD分析证实。 FTIR分析证实了聚合物与金属离子的复杂形成。这些薄膜的介电研究也已在100 setHz至1 MHz的各种设定温度下进行,以进行阻抗谱分析,以评估由于单一导电机制而产生的导电性,因此具有单一半圆图形由这些聚合物薄膜制成。 DC电导率随温度的升高而增加,这可能是由于高温下自由电荷(极化子和自由离子)的迁移率较高所致。对于PVA:Gd3 +和PVA:Ho3 +聚合物薄膜,电导率趋势遵循Arrhenius方程。 PVA:Gd3 +聚合物薄膜显示出铁磁性,而PVA:Ho3 +聚合物薄膜根据磁性特征曲线中的趋势显示出顺磁性。

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