首页> 外文期刊>Macromolecular Research >Polymer Compositional Ratio-Dependent Morphology, Crystallinity, Dielectric Dispersion, Structural Dynamics, and Electrical Conductivity of PVDF/PEO Blend Films
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Polymer Compositional Ratio-Dependent Morphology, Crystallinity, Dielectric Dispersion, Structural Dynamics, and Electrical Conductivity of PVDF/PEO Blend Films

机译:聚合物组成比依赖性形态,结晶度,介电分散,结构动力学和PVDF / PEO共混膜的电导率

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摘要

The polymer blend (PB) films consisted of poly(vinylidene fluoride) (PVDF) and poly(ethylene oxide) (PEO) with different compositional ratios (i.e., PVDF/PEO =100/0, 75/25, 50/50, 25/75, and 0/100 wt%) have been prepared by solution casting method. These PB films were characterized by scanning electron microscopy (SEM), energy dispersive X-ray (EDX) spectroscopy, X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, and dielectric relaxation spectroscopy (DRS). The pristine films of PVDF and PEO have spherulite morphologies, which change enormously with the variation of their compositions in blend films. The EDX spectra confirm the linear variation of the amount of respective polymer elements, with the change of its compositional ratio in the PB films. The XRD and FTIR results confirm that the semicrystalline PVDF film has predominantly alpha- and beta-phase crystals. The degree of crystallinity of these PB films exhibits non-linear increase, with increasing amount of PEO in the films. The relative fraction of the beta-phase crystal of the PVDF in these complex PB films has been determined from the fractional relations based on the areas and intensities of crystalline peaks, observed in their XRD patterns which is found the maximum (similar to 50%) for the 75 PVDF/25 PEO blend film. The dielectric dispersion of these PB films in the frequency window of 20 Hz-1MHz at 27 degrees C reveals that the real part of the complex permittivity is governed predominantly by the interfacial polarization effect at lower audio frequencies, whereas it mainly depends on the polymer compositional ratio at higher radio frequencies. The segmental relaxation process peak of the PEO chain observed in the loss part of the electric modulus spectra, shifts toward the lower frequency side with a significant suppression of intensity as the amount of PVDF enhances in the PB films. This result confirms that the PEO dynamics face considerable hindrance by the PVDF structures. The dc electrical conductivity of these PB films increases non-linearly with increasing amount of PEO in the films, and varies by more than an order of magnitude with the variation of the compositional ratio over the entire range. The temperature-dependent study of 50 PVDF/50 PEO blend film confirms its thermally activated dielectric properties and the structural dynamics with the relaxation activation energy of 0.23 eV. The compositional ratio-dependent dielectric properties of PVDF/PEO blend films offer a promising potential for their use as dielectric permittivity- and electrical conductivity-tunable insulating materials, with engineered functionality for flexible electronics and electrical devices.
机译:聚合物共混物(PB)薄膜由聚(偏二氟乙烯)(PVDF)和聚(环氧乙烷)(PEO)组成,具有不同的成分比例(即PVDF / PEO = 100/0,75 / 25,50 / 50,25 / 75和0/100wt%)通过溶液铸造方法制备。通过扫描电子显微镜(SEM),能量分散X射线(EDX)光谱,X射线衍射(XRD),傅里叶变换红外(FTIR)光谱和介电弛豫光谱(DRS),表征这些PB膜。 PVDF和PEO的原始薄膜具有球晶形态,其在共混膜中的组合物的变化时变化。 EDX光谱通过在PB薄膜中的改变其组成比的变化来确认各聚合物元素的量的线性变化。 XRD和FTIR结果证实,半结晶PVDF薄膜主要是α-和β相晶体。这些PB膜的结晶度表现出非线性增加,薄膜中的PEO量增加。 PVDF在这些复合PB膜中的β相晶的相对分数已经从基于结晶峰的区域和强度的分数关系确定,在其XRD图案中观察到最大(类似于50%)对于75个PVDF / 25 PEO混合物薄膜。这些PB膜在27摄氏度的20Hz-1MHz频率窗口中的介电分散揭示了复杂介电常数的实际部分主要受较低音频频率下的界面偏振效果主要的控制,而它主要取决于聚合物组成在较高的无线电频率下的比率。在电模型光谱的损耗部分观察到的PEO链的节段性弛豫过程峰,朝向下频侧移动,强度抑制强度,因为PB膜中的PVDF的量增强。该结果证实,PEO动力学通过PVDF结构面临相当大的障碍。这些PB膜的直流电导率随着薄膜中的量的增加而增加,并且随着组成比在整个范围内的变化而变化。 50PVDF / 50 PEO共混膜的温度依赖性研究通过0.23eV的松弛活化能量证实其热活化的介电性能和结构动态。 PVDF / PEO共混膜的组成比依赖性介电性质提供了适用于它们用作介电介电常数和电导率可调的绝缘材料的可能性,具有柔性电子和电气设备的工程化功能。

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