Aziz Shujahadeen B, Nofal Muaffaq M, Abdulwahid Rebar T, O Ghareeb Hewa, Dannoun Elham M A, M Abdullah Ranjdar, Hamsan M H, Kadir M F Z
Hameed Majid Advanced Polymeric Materials Research Lab., Physics Department, College of Science, University of Sulaimani, Qlyasan Street, Sulaimani 46001, Iraq.
Department of Civil Engineering, College of Engineering, Komar University of Science and Technology, Sulaimani 46001, Iraq.
Polymers (Basel). 2021 Mar 5;13(5):803. doi: 10.3390/polym13050803.
This report presents the preparation of plasticized sodium ion-conducting polymer electrolytes based on polyvinyl alcohol (PVA)via solution cast technique. The prepared plasticized polymer electrolytes were utilized in the device fabrication of electrical double-layer capacitors (EDLCs). On an assembly EDLC system, cyclic voltammetry (CV), electrical impedance spectroscopy (EIS), linear sweep voltammetry (LSV), transfer number measurement (TNM) and charge-discharging responses were performed. The influence of plasticization on polymer electrolytes was investigated in terms of electrochemical properties applying EIS and TNM. The EIS was fitted with electrical equivalent circuit (EEC) models and ion transport parameters were estimated with the highest conductivity of 1.17 × 10 S cm was recorded. The CV and charge-discharging responses were used to evaluate the capacitance and the equivalent series resistance (ESR), respectively. The ESR of the highest conductive sample was found to be 91.2 Ω at the first cycle, with the decomposition voltage of 2.12 V. The TNM measurement has shown the dominancy of ions with = 0.982 for the highest conducting sample. The absence of redox peaks was proved via CV, indicating the charge storing process that comprised ion accumulation at the interfacial region. The fabricated EDLC device is stable for up to 400 cycles. At the first cycle, a high specific capacitance of 169 F/g, an energy density of 19 Wh/kg, and a power density of 600 W/kg were obtained.
本报告介绍了通过溶液浇铸技术制备基于聚乙烯醇(PVA)的增塑钠离子导电聚合物电解质。所制备的增塑聚合物电解质用于双电层电容器(EDLC)的器件制造。在组装的EDLC系统上,进行了循环伏安法(CV)、电化学阻抗谱(EIS)、线性扫描伏安法(LSV)、迁移数测量(TNM)和充放电响应测试。应用EIS和TNM研究了增塑对聚合物电解质电化学性能的影响。EIS采用等效电路(EEC)模型拟合,并估计了离子传输参数,记录到最高电导率为1.17×10 S/cm。CV和充放电响应分别用于评估电容和等效串联电阻(ESR)。发现最高导电样品在第一个循环时的ESR为91.2Ω,分解电压为2.12V。TNM测量表明,最高导电样品中离子的迁移数为0.982。通过CV证明没有氧化还原峰,表明电荷存储过程包括离子在界面区域的积累。所制造的EDLC器件在高达400次循环时是稳定的。在第一个循环中,获得了169 F/g的高比电容、19 Wh/kg的能量密度和600 W/kg的功率密度。