Impedance, Electrical Equivalent Circuit (EEC) Modeling, Structural (FTIR and XRD), Dielectric, and Electric Modulus Study of MC-Based Ion-Conducting Solid Polymer Electrolytes

被引:19
|
作者
Faris, Balen K. [1 ]
Hassan, Ary A. [1 ]
Aziz, Shujahadeen B. [1 ,2 ]
Brza, Mohamad A. [3 ]
Abdullah, Aziz M. [3 ]
Abdalrahman, Ari A. [1 ]
Abu Ali, Ola A. [4 ]
Saleh, Dalia I. [4 ]
机构
[1] Univ Sulaimani, Coll Sci, Dept Phys, Hameed Majid Adv Polymer Mat Res Lab,Kurdistan Re, Qlyasan St, Sulaimani 46001, Iraq
[2] Komar Univ Sci & Technol, Kurdistan Reg Govt, Dept Civil Engn, Coll Engn, Sulaimani 46001, Iraq
[3] Charmo Univ, Coll Med & Appl Sci, Dept Med Phys, Sulaimani 46023, Iraq
[4] Taif Univ, Coll Sci, Dept Chem, POB 11099, At Taif 21944, Saudi Arabia
关键词
methylcellulose polymer electrolyte; XRD and FTIR; impedance study; EEC modeling; dielectric study; electric modulus analysis; relaxation processes; RELAXATION; CHITOSAN; METHYLCELLULOSE; BEHAVIOR; CELLULOSE; PARAMETERS; MECHANISM; SODIUM; SALTS;
D O I
10.3390/ma15010170
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The polymer electrolyte system of methylcellulose (MC) doped with various sodium bromide (NaBr) salt concentrations is prepared in this study using the solution cast technique. FTIR and XRD were used to identify the structural changes in solid films. Sharp crystalline peaks appeared at the XRD pattern at 40 and 50 wt.% of NaBr salt. The electrical impedance spectroscopy (EIS) study illustrates that the loading of NaBr increases the electrolyte conductivity at room temperature. The DC conductivity of 6.71 x 10(-6) S/cm is obtained for the highest conducting electrolyte. The EIS data are fitted with the electrical equivalent circuit (EEC) to determine the impedance parameters of each film. The EEC modeling helps determine the circuit elements, which is decisive from the engineering perspective. The DC conductivity tendency is further established by dielectric analysis. The EIS spectra analysis shows a decrease in bulk resistance, demonstrating free ion carriers and conductivity boost. The dielectric property and relaxation time confirmed the non-Debye behavior of the electrolyte system. An incomplete semicircle further confirms this behavior model in the Argand plot. The distribution of relaxation times is related to the presence of conducting ions in an amorphous structure. Dielectric properties are improved with the addition of NaBr salt. A high value of a dielectric constant is seen at the low frequency region.
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页数:17
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