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Improved Electrical Properties of Free Standing Blend Polymer for Renewable Energy Resources

机译:改进可再生能源的自由常有混合聚合物的电性能

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Blend polymer electrolytes are prepared for salt concentration (O/Li = 4) with the constant ratio (0.5 gm) of PEO and PAN using solution casting technique. The prepared free standing solid polymeric film is characterized by Field Emission Scanning Electron Microscopy (FESEM) which confirms the homogeneous distribution of dissociated salt in blend polymer matrix. After addition of salt the ionic conductivity value is found to be of the order of 7.13 × 10~(-5) Scm~(-1) which is three orders higher when compared with pure blend polymer films. The microscopic interaction among the polymer-ion, ion-ion has been confirmed by the Fourier Transform Infrared (FTIR) Spectroscopy. A very fine correlation has been built in the electrical conductivity and FTIR result. On the basis of above finding, a prepared free standing solid polymeric film appears to be appropriate for the energy storage/conversion device applications.
机译:使用溶液浇铸技术,用恒定比(0.5克)的PEO和PAN制备共混聚合物电解质的盐浓度(O / Li = 4)。制备的独立式固体聚合物膜的特征在于现场发射扫描电子显微镜(FeSEM),其证实混合物聚合物基质中解离盐的均匀分布。在加入盐后,发现离子电导率值为7.13×10〜(-5)SCM〜(-1)的顺序,其与纯共混聚合物膜相比,这三个令人越高。通过傅里叶变换红外(FTIR)光谱证实了聚合物离子中的微观相互作用。在电导率和FTIR结果中建立了非常细的相关性。在上述发现的基础上,制备的自由稳定固体聚合物膜似乎适合于能量存储/转换装置应用。

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