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基于壳聚糖:葡聚糖的具有高能量密度和比电容的增塑锂离子传导绿色聚合物共混电解质的特性

Characteristics of Plasticized Lithium Ion Conducting Green Polymer Blend Electrolytes Based on CS: Dextran with High Energy Density and Specific Capacitance.

作者信息

Dannoun Elham M A, Aziz Shujahadeen B, Abdullah Sozan N, Nofal Muaffaq M, Mahmoud Khaled H, Murad Ary R, Abdullah Ranjdar M, Kadir Mohd F Z

机构信息

Associate Director of General Science Department, Woman Campus, Prince Sultan University, P.O. Box 66833, Riyadh 11586, Saudi Arabia.

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

出版信息

Polymers (Basel). 2021 Oct 20;13(21):3613. doi: 10.3390/polym13213613.

Abstract

The solution cast process is used to set up chitosan: dextran-based plasticized solid polymer electrolyte with high specific capacitance (228.62 F/g) at the 1st cycle. Fourier-transform infrared spectroscopy (FTIR) pattern revealed the interaction between polymers and electrolyte components. At ambient temperature, the highest conductive plasticized system (CDLG-3) achieves a maximum conductivity of 4.16 × 10 S cm. Using both FTIR and electrical impedance spectroscopy (EIS) methods, the mobility, number density, and diffusion coefficient of ions are measured, and they are found to rise as the amount of glycerol increases. Ions are the primary charge carriers, according to transference number measurement (TNM). According to linear sweep voltammetry (LSV), the CDLG-3 system's electrochemical stability window is 2.2 V. In the preparation of electrical double layer capacitor devices, the CDLG-3 system was used. There are no Faradaic peaks on the cyclic voltammetry (CV) curve, which is virtually rectangular. Beyond the 20th cycle, the power density, energy density, and specific capacitance values from the galvanostatic charge-discharge are practically constant at 480 W/Kg, 8 Wh/Kg, and 60 F g, for 180 cycles.

摘要

溶液浇铸法用于制备基于壳聚糖

葡聚糖的增塑固体聚合物电解质,其在第1循环时具有高比电容(228.62 F/g)。傅里叶变换红外光谱(FTIR)图谱揭示了聚合物与电解质成分之间的相互作用。在环境温度下,最高导电增塑体系(CDLG-3)的最大电导率达到4.16×10 S cm。使用FTIR和电阻抗谱(EIS)方法测量了离子的迁移率、数密度和扩散系数,发现它们随着甘油含量的增加而升高。根据迁移数测量(TNM),离子是主要的电荷载体。根据线性扫描伏安法(LSV),CDLG-3体系的电化学稳定窗口为2.2 V。在制备双电层电容器器件时,使用了CDLG-3体系。循环伏安法(CV)曲线上没有法拉第峰,几乎是矩形的。在第20次循环之后,恒电流充放电的功率密度、能量密度和比电容值在180次循环中实际上保持恒定,分别为480 W/Kg、8 Wh/Kg和60 F g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a932/8587706/56265ccac9d3/polymers-13-03613-sch001.jpg

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