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Mechanical strength and ionic conductivity of polymer electrolyte membranes prepared from cellulose acetate-lithium perchlorate

机译:高氯酸纤维素 - 氯乙酸锂制备的聚合物电解质膜的机械强度和离子电导率

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The need for secondary batteries is increasing every year. The secondary battery using a liquid electrolyte has some weaknesses. A solid polymer electrolyte is the alternative electrolytes developed to replace the liquid electrolyte type. This study was conducted to determine the effect of lithium perchlorate content on the polymer electrolyte membranes of cellulose acetate-LiClO4. The cellulose acetate-LiClO4 membranes were prepared by mixing cellulose acetate and LiClO4 in various compositions using tetrahydrofurane (THF) as solvent. The effect of LiClO4 ratios on the polymer electrolyte membranes was studied by analysis of the functional groups using FTIR (Fourier Transform Infrared) spectroscopy measurement, the ionic conductivity by EIS (Electrochemical Impedance Spectroscopy) method, and mechanical properties by tensile tester measurements. The ionic conductivity of the membranes increased with the increasing in the ratios of lithium perchlorate content in the membranes and reached the optimum value at 1.79x10~(-4) S cm~(-1) corresponded to the cellulose acetate doped with 25% (w/w) LiClClO4 membrane. The presence of 10% (w/w) LiClO4 content within cellulose acetate membranes can increase the mechanical properties of the membranes from 19.89 to 43.29 MPa for tensile strength, and from 2.55 to 4.53% for elongation at break. However, when the cellulose acetate membranes containing ratio of LiClO4 more than 10% (w/w), consequently the tensile strength tended to decrease and the elongation at break was increased.
机译:每年对二次电池的需求正在增加。使用液体电解质的二次电池具有一些弱点。固体聚合物电解质是替代液体电解质型的替代电解质。进行该研究以确定高氯酸锂含量对乙酸纤维素 - LiClO4的聚合物电解质膜的影响。通过用四氢呋喃(THF)作为溶剂将醋酸纤维素和LiClO 4混合在各种组合物中以各种组合物混合来制备纤维素乙酸纤维素-LICLO4膜。通过使用FTIR(傅里叶变换红外线)光谱测量,通过EIS(电化学阻抗光谱)方法的离子电导率和拉伸试验机测量的机械性能来研究LiClO4比对聚合物电解质膜对聚合物电解质膜上的影响。膜的离子电导率随着膜中的氯酸锂含量的比率的增加而增加,达到1.79×10〜(-4)Cm〜(-1)的最佳值,所述乙酸纤维素掺杂25%( w / w)liclclo4膜。醋酸纤维素膜内的10%(w / w)LiClO4含量可以从19.89至43.29MPa增加膜的机械性能,用于抗拉强度的2.55-4.53%,用于断裂伸长率。然而,当含有LiClO4的醋酸纤维素膜的醋酸纤维素膜大于10%(w / w)时,因此倾向于降低和断裂伸长的拉伸强度增加。

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