Fabrication of (Ag, Zn, Co) based spinel ferrites as electrode materials for high energy density hybrid supercapacitors

被引:11
|
作者
Batool, Zahra [1 ]
Rehman, Atiq ur [1 ]
Ahmad, Mukhtar [2 ]
Iqbal, Muhammad Waqas [1 ]
Wabaidur, Saikh Mohammad [3 ]
Siddiqui, Masoom Raza [3 ]
Glass, Jeffrey T. [4 ]
机构
[1] Riphah Int Univ, Dept Phys, Lahore Campus, Lahore, Pakistan
[2] COMSATS Univ Islamabad, Dept Phys, Lahore Campus, Lahore 54000, Pakistan
[3] King Saud Univ, Coll Sci, Chem Dept, Riyadh 11451, Saudi Arabia
[4] Duke Univ, Nanomat & thin films lab, Durham, NC USA
关键词
Spinel ferrites; Cubic morphology; CV measurements; Cyclic stability; Asymmetric supercapacitors; FACILE HYDROTHERMAL SYNTHESIS; METAL-OXIDE ELECTRODES; COBALT FERRITE; MAGNETIC-PROPERTIES; ELECTROCHEMICAL PROPERTIES; DIELECTRIC-PROPERTIES; ZINC FERRITE; PERFORMANCE; NANOPARTICLES; CARBON;
D O I
10.1016/j.est.2023.110092
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Three spinel ferrites, AgFe2O4, CoFe2O4, and ZnFe2O4, were successfully synthesized using the hydrothermal technique and were employed as electrode materials for supercapacitor applications. These spinel ferrites underwent a comprehensive assessment of their crystallinity, morphology, and electrochemical performance. The structural analysis using X-ray diffraction convincingly demonstrated the excellent crystallization of these compounds, indicating the development of single-phase spinel ferrites. A uniform cubic structure was successfully achieved. TEM analysis revealed that the as-synthesized nanomaterials exhibited a spherical shape with particle sizes ranging from 50 to 100 nm. In terms of electrochemical performance, utilizing a three-electrode configuration, the cubic spinel CoFe2O4 nanoparticles, synthesized at 200 degrees C, exhibited outstanding results, with a maximum specific capacitance of 2146.40 F/g at 3 mV/s, surpassing the performance of AgFe2O4 and ZnFe2O4. To create a hybrid asymmetric device utilizing all three spinel ferrites, activated carbon served as the negative electrode, while AgFe2O4, CoFe2O4, and ZnFe2O4 were employed as positive electrodes. Notably, the CoFe2O4 electrode outperformed the others, achieving a remarkable 94 % coulombic efficiency and demonstrating long-term cyclic stability with 87 % capacitance retention after 10,000 cycles. The findings of this study underscore the significant potential of the synthesized nanoparticles as promising candidates for hybrid supercapacitors and various other electrochemical applications.
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页数:15
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