Investigation of thermal, optical properties, AC conductivity and broadband dielectric spectroscopy of poly(ethyl methacrylate)/poly(vinyl chloride) polymer blend

W.B. Elsharkawy , H. Elzanaty , Z.M. Elqahtani , T. Fahmy , A. Sarhan
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Abstract

This work reports the structural, thermal, optical and electrical properties of PEMA, PVC and their polyblends. These properties are investigated by FTIR, TGA, UV/Vis and broadband dielectric spectroscopy. FTIR spectra showed that the characteristic bands of PEMA and PVC are affected by blending and displayed red and blue shifts confirming that an intermolecular interaction between PEMA and PVC is occurred. Thermal degradation kinetics of PEMA, PVC and its polyblend samples is investigated in details and the thermal properties of each decomposition stage are estimated. UV measurements analysis revealed that Urbach energy (EU) is increased while optical bandgap decreased upon increasing the PVC content. The indirect and direct band gap (Eig/Edg) values are decreased from (3.95/4.21) to (3.10/3.92) eV. Also, upon increasing the content of PVC, the lattice dielectric constant (εL) is increased from 2.71 to 7.83. Wemple-DiDomenico model is applied for investigating the refractive index dispersion and to calculate the oscillator and dispersion energies. It is observed that the linear/nonlinear parameters are increased nonlinearly with increasing the PVC content. χ(1), χ(3) and n2 values are found to increase from 0.104, 0.213 × 10−13 and 4.01 × 10−12 to 0.363, 31.26 × 10−13 and 5.33 × 10−12. These results make PEMA/PVC polyblend strong candidates for use in the development and design of advanced optoelectronic devices. AC conductivity (σac) and dielectric measurements are carried out at various temperatures in wide frequency range. Jonscher power law is applied and showed that the predominant conduction mechanism in our samples is overlapping large-polaron tunneling (OLPT). The dielectric constant and electrical impedance are found to be frequency and temperature dependent. The investigation of the electric modulus (M*) revealed that M′ is increased non-linearly with increasing the frequency, while M″ spectra displayed two different modes of relaxation. The interfacial polarization (IP) is observed in low frequency region, while, dipolar relaxation is detected in high frequency region.

聚(甲基丙烯酸乙酯)/聚(氯乙烯)聚合物混合物的热、光学特性、交流电导率和宽带介电光谱研究
本研究报告介绍了 PEMA、PVC 及其共混物的结构、热、光学和电学特性。这些特性通过傅立叶变换红外光谱、热重分析、紫外/可见光谱和宽带介电光谱进行了研究。傅立叶变换红外光谱显示,PEMA 和 PVC 的特征谱带受到混合物的影响,出现了红移和蓝移,证实 PEMA 和 PVC 之间发生了分子间相互作用。详细研究了 PEMA、PVC 及其共混样品的热降解动力学,并估算了每个分解阶段的热特性。紫外测量分析表明,随着 PVC 含量的增加,Urbach 能量(EU)增加,而光带隙减小。间接和直接带隙(Eig/Edg)值从(3.95/4.21)eV 下降到(3.10/3.92)eV。此外,随着聚氯乙烯含量的增加,晶格介电常数(εL)也从 2.71 增至 7.83。应用 Wemple-DiDomenico 模型研究了折射率色散,并计算了振荡能和色散能。结果表明,随着 PVC 含量的增加,线性/非线性参数呈非线性增长。χ(1)、χ(3) 和 n2 值分别从 0.104、0.213 × 10-13 和 4.01 × 10-12 增加到 0.363、31.26 × 10-13 和 5.33 × 10-12。这些结果使 PEMA/PVC 聚合物成为开发和设计先进光电设备的有力候选材料。在不同温度和宽频范围内进行了交流电导率(σac)和介电强度测量。测量结果表明,样品中最主要的传导机制是重叠大极子隧道(OLPT)。介电常数和电阻抗与频率和温度有关。电模量(M*)的研究表明,M′随频率的增加而非线性增加,而 M″ 光谱则显示出两种不同的弛豫模式。在低频区域观察到了界面极化(IP),而在高频区域检测到了偶极弛豫。
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