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Studies on Composite PVA-CA-NH4CF3SO3-AI2O3 Polymer Electrolyte for Electrochemical Devices

机译:电化学装置复合PVA-CA-NH4CF3SO3-AI2O3聚合物电解质的研究

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In the present study,polymer electrolyte with polyvinyl alcohol)(PVA)blended with cellulose acetate(CA)was chosen to prepare composite electrolyte using ammonium triflate salt and nano sized alumina(Al2O3-<50 nm)by the solution casting method.The as prepared samples were characterized by X-ray diffraction,FT-IR,differential scanning calorimetry and AC impedance spectra.The loss tangent and dielectric studies were carried out for all the prepared samples using AC impedance analysis.Activation energy with regression values and relaxation time were calculated and found to be low for the highest conducting membranes.The presence of 0.1 mol content of nano alumina has enhanced the ionic conductivity significantly to the value of 2.012 × 10~(-3)S/cm from that of the filler-free electrolyte(2.93 × 10~(-4)S/cm).Ionic transference number was calculated by electrostatic polarization method and it was found to be 0.9684,which shows the conducting species were ions.A proton battery fabricated using the configuration Zn+ZnSO4·H2O||PVA-CA-0.5 mol NH4CF3SO3-0.1 mol Al2O3|| PbO2 + V2O5 produced a steady state open circuit voltage of 1.39 V,which proves the prepared composite electrolyte is suitable solid electrolyte for electrochemical devices.
机译:在本研究中,选择与醋酸纤维素(CA)混合的聚乙烯醇的聚合物电解质(PVA)用溶液浇铸方法使用铵三氟盐盐和纳米尺寸氧化铝(Al 2 O 3-<50nm)制备复合电解质。作为制备的样品的特征在于X射线衍射,FT-IR,差示扫描量热法和AC阻抗谱。使用AC阻抗分析的所有制备的样品进行损失切线和介电研究。随着回归值和弛豫时间的激活能量进行动力。计算并发现最高导电膜的含量为低。纳米氧化铝的存在显着提高了离子电导率,从无填充电解质的值显着提高到2.012×10〜(-3)S / cm的值(2.93×10〜(-4)S / cm).IONIC转移数通过静电极化方法计算,它被发现为0.9684,这表明导电物种是离子。质子电池制造了USIN G配置Zn + ZnSO4·H2O || PVA-CA-0.5Mol NH4CF3SO3-0.1 Mol Al2O3 || PBO2 + V2O5产生的稳态开路电压为1.39 V,这证明了制备的复合电解质是电化学装置的合适固体电解质。

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