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Modification in the transport and morphological properties of solid polymer electrolyte system by low-energy ion irradiation

机译:通过低能量离子照射改变固体聚合物电解质系统的运输和形态学性质

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摘要

The poly(ethylene oxide) (PEO)-based solid polymer electrolyte (SPE) systems consisting of NaBr as a dopant salt are prepared. The stable PEO:NaBr system with 3?wt% of NaBr was subjected to low-energy ion beam irradiation to bring in morphological modification. The irradiated samples are studied using complex impedance spectra to evaluate electrical conductivity and relaxation process in the system. The studies show an increase in conductivity by one order magnitude in the irradiated systems. The dielectric loss tangent (tanδ) curves show a single peak due to strong coupling of ion transport with segmental motion. The resultant relaxation time τ exhibits a continuous decrease indicating increase in segmental dynamics as a result of increased amorphous content in the system. The temperature-dependent studies also indicate that the irradiated systems are more disordered/amorphous compared to pure systems. This fact is further supported by XRD, by observing an increase in peak width associated with reduction in peak intensity. The Raman spectra also support the change in morphology of the system by the appearance of disordered-longitudinal acoustic mode band.
机译:制备由作为掺杂剂盐的NaBr组成的聚(环氧乙烷)(PEO)的基于固体聚合物电解质(SPE)系统。稳定的PEO:NaBR系统具有3·wt%NaBr的低能量离子束照射,以引入形态学修饰。使用复杂阻抗光谱研究辐照样品,以评估系统中的电导率和弛豫过程。研究表明,照射系统中的电导率的增加。介电损耗切线(Tanδ)曲线由于离子传输的强耦合而具有分段运动,因此表示单峰。由于系统中的无定形含量增加,所得到的弛豫时间τ表现出显着降低表明分段动力学增加。温度依赖性研究还表明,与纯系统相比,辐照的系统更紊乱/无定形。通过观察与降低峰强度相关的峰宽的增加,通过XRD进一步支持该事实。拉曼光谱还通过无序纵向声学模式频带的出现支持系统的形态变化。

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