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Mechanical properties of PAN-based gel electrolytes: small-amplitude oscillatory shear study

机译:PAN基凝胶电解质的机械性能:小振幅振荡剪切研究

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Polymer electrolytes with ionic conductivities on the order of mS cm{sup}(-1) at room temperature were prepared from the gelification of LiCIO{sub}4/ethylene carbonate-propylene carbonate (EC-PC) solutions into a poly(acrylonitrile) (PAN) matrix. Oscillating rheological experiments were performed on gels prepared at different solvent/salt molar ratios in order to investigate their mechanical properties. Temperature sweep tests (25-120℃) showed changes in the rheological behaviour that was related to structural transitions. A strong-weak gel transition takes place at about 80℃ independent of salt concentration hence assignable only to the polymeric matrix. This transition is completely reversible during cooling ramps and represents a necessary mechanical property from a processing standpoint. A gel-sol transition was observed at ca. 110℃ where both viscoelastic moduli reduce themselves by a factor 100, reporting the formation of a fluid system with G">G'.
机译:通过将LiCIO {sub} 4 /碳酸亚乙酯-碳酸亚丙酯(EC-PC)溶液凝胶化成聚丙烯腈,制备了室温下离子电导率约为mS cm {sup}(-1)的聚合物电解质。 (PAN)矩阵。为了研究其机械性能,对以不同溶剂/盐摩尔比制备的凝胶进行了振荡流变学实验。温度扫描测试(25-120℃)显示,流变行为的变化与结构转变有关。强弱凝胶转变发生在大约80℃的温度下,与盐浓度无关,因此只能分配给聚合物基质。这种过渡在冷却斜坡期间是完全可逆的,并且从加工的角度来看代表了必要的机械性能。在约200℃观察到凝胶-溶胶转变。 110℃,两个粘弹性模量均降低100倍,报告形成了具有G“> G'的流体系统。

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