Aziz Shujahadeen B, Brza Mohamad A, Abdulwahid Rebar T, Hassan Jamal, Tahir Hawzhin B, Al-Saeedi Sameerah I, Abdullah Ranjdar M, Hadi Jihad M
Research and Development Center, University of Sulaimani, Qlyasan Street, Sulaimani, Kurdistan Regional Government, 46001, Iraq.
Department of Physics, College of Science, Charmo University, Chamchamal, Sulaymaniyah, 46023, Iraq.
Sci Rep. 2023 Nov 30;13(1):21139. doi: 10.1038/s41598-023-48417-6.
This study introduces a novel system of solid electrolytes for electrical double-layer capacitors (EDLCs) utilizing biopolymer electrolytes with high energy density comparable to NiMH batteries. To prepare the electrolytes, a proton-conducting plasticized chitosan: poly(2-oxazoline) (POZ) with good film-forming properties was fabricated using a solution casting technique, and ammonium trifluoromethanesulfonate (NHCFSO) salt was employed as a proton provider. Various glycerol concentrations were incorporated into the chitosan:POZ: NHCFSO system to enhance the ionic conductivity and fully transparent films were obtained. The impedance technique was utilized to determine the conductivity and measure the diffusion coefficient, mobility, and number density of ions. The electrochemical measurements, including linear sweep voltammetry (LSV) and cyclic voltammetry (CV), validated the high performance of the system. The EDLC was examined using galvanostatic charge-discharge (GCD) equipment, and the results revealed an energy density of 43 Wh/kg, specific capacitance of 300 F/g, and power density of 1800 W/kg over 500 cycles. These findings suggest that it is plausible to develop EDLCs that resemble batteries, making them a more desirable energy storage option for the industry.
本研究介绍了一种用于双电层电容器(EDLC)的新型固体电解质系统,该系统利用具有与镍氢电池相当的高能量密度的生物聚合物电解质。为了制备电解质,采用溶液浇铸技术制备了具有良好成膜性能的质子传导增塑壳聚糖:聚(2-恶唑啉)(POZ),并使用三氟甲磺酸铵(NHCFSO)盐作为质子供体。将各种甘油浓度加入到壳聚糖:POZ:NHCFSO体系中以提高离子电导率,并获得了完全透明的薄膜。利用阻抗技术测定电导率并测量离子的扩散系数、迁移率和数密度。包括线性扫描伏安法(LSV)和循环伏安法(CV)在内的电化学测量验证了该系统的高性能。使用恒电流充放电(GCD)设备对EDLC进行了测试,结果显示在500次循环中能量密度为43 Wh/kg,比电容为300 F/g,功率密度为1800 W/kg。这些发现表明,开发类似电池的EDLC是可行的,使其成为该行业更理想的储能选择。