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Effects of PEG plasticizer concentrations and film preparation methods on the structural, dielectric and electrical properties of PEO-PMMA blend based plasticized solid polymer electrolyte films

机译:PEG增塑剂浓度和薄膜制备方法对PEO-PMMA混合物的塑性固体电解质电解质膜结构,电介质和电性能的影响

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摘要

Low molecular weight poly(ethylene glycol) (PEG) has been used as plasticizer in the preparation of plasticized solid polymer electrolyte (PSPE) films consisted of poly(ethylene oxide) (PEO) and poly(methyl methacrylate) (PMMA) blend based matrix with lithium tetrafluoroborate (LiBF4) as dopant ionic salt. Solution cast (SC) melt pressed and the ultrasonic microwave (US MW) irradiated solution cast melt pressed methods have been used for the preparation of these PSPE films. The dielectric dispersion, ac ionic conductivity and structural dynamics of these electrolytes have been studied by employing the dielectric relaxation spectroscopy (DRS) over the frequency range from 20 Hz to 1 MHz, at room temperature. The structural properties of these materials have been characterized by their X ray diffraction (XRD) measurements. The influence of varying PEG concentrations (5, 10 and 15 wt%) and also the sample preparation methods on the complex dielectric function, ac electrical conductivity, electric modulus and the impedance spectra of these electrolytes have been explored. The ionic conductivity of US MW prepared PSPE films enhances non-linearly, whereas for the SC prepared films it vary anomalously with the increase of PEG concentrations. The variations in conductivity of these PSPEs are governed by the change in strength of polymer-ion, plasticizer-ion and the polymer-plasticizer interactions and also the polymer chain segmental motion in the solid ion-dipolar complexes. Room temperature ionic conductivity values of the PEG concentrations and sample preparation methods dependent these PSPE electrolytes at low concentration of dopant salt are found in the range from 1.79 to 4.22 mu S cm(-1), which confirm their suitability in preparation of the all-solid-state ion conducting devices.
机译:低分子量聚(乙二醇)(PEG)已被用作塑化的固体聚合物电解质(PSPE)膜的增塑剂,由聚(环氧乙烷)(PEO)和聚(甲基丙烯酸甲酯)(PMMA)混合物基基质组成用锂四氟硼酸锂(Libf4)作为掺杂剂离子盐。溶液铸造(SC)熔融压制和超声波微波(US MW)辐照溶液铸造熔融压制方法已被用于制备这些PSPE薄膜。通过在室温下在20Hz至1MHz的频率范围内使用介电弛豫光谱(DRS)来研究这些电解质的介电分散,AC离子电导率和结构动力学。这些材料的结构性质的特征在于它们的X射线衍射(XRD)测量。已经探讨了不同PEG浓度(5,10和15wt%)的影响对这些电解质的复合介质函数,交流电导率,电模量和阻抗光谱的样品制备方法。美国MW制备的PSPE膜的离子电导率非线性地增强,而对于SC制备的薄膜,它随着PEG浓度的增加而异。这些PSPE的电导率的变化由聚合物 - 离子,增塑剂 - 离子和聚合物 - 增塑剂相互作用的强度的变化来控制,并且在固体离子偶极络合物中的聚合物链节段运动也是如此。室温离子电导率和样品制备方法的离子电导率依赖于低浓度的掺杂剂盐的PSPE电解质,其范围为1.79至4.22 mc cm(-1),这确认了它们在制备全部的适用性 - 固态离子传导装置。

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