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基于壳聚糖:甲基纤维素的用于 EDLC 的有前景的聚合物混合电解质,具有高比容量和能量密度。

A Promising Polymer Blend Electrolytes Based on Chitosan: Methyl Cellulose for EDLC Application with High Specific Capacitance and Energy Density.

机构信息

Advanced Polymeric Materials Research Lab., Department of Physics, College of Science, University of Sulaimani, Qlyasan Street, Sulaimani 46001, Kurdistan Regional Government, Iraq.

Komar Research Center (KRC), Komar University of Science and Technology, Sulaimani 46001, Kurdistan Regional Government, Iraq.

出版信息

Molecules. 2019 Jul 9;24(13):2503. doi: 10.3390/molecules24132503.

Abstract

In the present work, promising proton conducting solid polymer blend electrolytes (SPBEs) composed of chitosan (CS) and methylcellulose (MC) were prepared for electrochemical double-layer capacitor (EDLC) application with a high specific capacitance and energy density. The change in intensity and the broad nature of the XRD pattern of doped samples compared to pure CS:MC system evidencedthe amorphous character of the electrolyte samples. The morphology of the samples in FESEM images supported the amorphous behavior of the solid electrolyte films. The results of impedance and Bode plotindicate that the bulk resistance decreasedwith increasing salt concentration. The highest DC conductivity was found to be 2.81 × 10 S/cm. The electrical equivalent circuit (EEC) model was conducted for selected samples to explain the complete picture of the electrical properties.The performance of EDLC cells was examined at room temperature by electrochemical techniques, such as impedance spectroscopy, cyclic voltammetry (CV) and constant current charge-discharge techniques. It was found that the studied samples exhibit a very good performance as electrolyte for EDLC applications. Ions were found to be the dominant charge carriers in the polymer electrolyte. The ion transference number () was found to be 0.84 while 0.16 for electron transference number (). Through investigation of linear sweep voltammetry (LSV), the CS:MC:NHSCN system was found to be electrochemically stable up to 1.8 V. The CV plot revealed no redox peak, indicating the occurrence of charge double-layer at the surface of activated carbon electrodes. Specific capacitance () for the fabricated EDLC was calculated using CV plot and charge-discharge analyses. It was found to be 66.3 F g and 69.9 F g (at thefirst cycle), respectively. Equivalent series resistance () of the EDLC was also identified, ranging from 50.0 to 150.0 Ω. Finally, energy density () was stabilized to anaverage of 8.63 Wh kg from the 10th cycle to the 100th cycle. The first cycle obtained power density () of 1666.6 W kg and then itdropped to 747.0 W kg at the 50th cycle and continued to drop to 555.5 W kg as the EDLC completed 100 cycles.

摘要

在本工作中,制备了具有高比电容和能量密度的质子导电聚合物共混电解质(SPBE),由壳聚糖(CS)和甲基纤维素(MC)组成,用于电化学双层电容器(EDLC)应用。与纯 CS:MC 体系相比,掺杂样品的 XRD 图谱强度和宽化表明电解质样品具有无定形特征。FESEM 图像中的样品形貌支持固体电解质膜的无定形行为。阻抗和 Bode 图的结果表明,随着盐浓度的增加,体电阻降低。发现最高的直流电导率为 2.81×10-3 S/cm。对选定的样品进行了电等效电路(EEC)模型,以解释电性能的全貌。通过电化学技术,如阻抗谱、循环伏安法(CV)和恒流充放电技术,在室温下检查了 EDLC 电池的性能。结果表明,所研究的样品作为 EDLC 应用的电解质表现出非常好的性能。发现离子是聚合物电解质中的主要载流子。离子迁移数()为 0.84,而电子迁移数()为 0.16。通过线性扫描伏安法(LSV)的研究,发现 CS:MC:NHSCN 体系在 1.8 V 以下电化学稳定。CV 图显示没有氧化还原峰,表明活性炭电极表面发生了电荷双层。通过 CV 图和充放电分析计算了所制备的 EDLC 的比电容()。发现分别为 66.3 F g 和 69.9 F g(第一循环)。还确定了 EDLC 的等效串联电阻(),范围从 50.0 到 150.0 Ω。最后,能量密度()从第 10 个循环到第 100 个循环稳定在平均 8.63 Wh kg。获得的第一周期功率密度()为 1666.6 W kg,然后在第 50 个周期下降到 747.0 W kg,并随着 EDLC 完成 100 个周期继续下降到 555.5 W kg。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8439/6651571/be9bf49aa538/molecules-24-02503-sch001.jpg

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