Recent progress on reduced graphene oxide and polypyrrole composites for high performance supercapacitors: A review

被引:51
作者
Abdillah, Oktaviardi Bityasmawan [1 ,2 ]
Bin Rus, Yahdi [2 ,3 ]
Ulfa, Maria [2 ,3 ]
Dedi, Ferry [3 ]
Iskandar, Ferry [1 ,2 ,4 ,5 ]
机构
[1] Inst Teknol Bandung, Fac Math & Nat Sci, Dept Phys, Jl Ganesha 10, Bandung 40132, Indonesia
[2] Inst Teknol Bandung, Natl Res & Innovat Agcy, Collaborat Res Ctr Adv Energy Mat, Jl Ganesha 10, Bandung 40132, Indonesia
[3] Natl Res & Innovat Agcy BRIN, Res Ctr Adv Mat, South Tangerang 15314, Banten, Indonesia
[4] Inst Teknol Bandung, Res Ctr Nanosci & Nanotechnol, Jl Ganesha 10, Bandung 40132, Indonesia
[5] Natl Ctr Sustainable Transportat Technol, Jl Ganesha 10, Bandung 40132, Indonesia
关键词
Reduced graphene oxide; Polymers; Polypyrroles; Supercapacitors; EDLC; Pseudocapacitance; CARBON NANOTUBE COMPOSITE; BINDER-FREE ELECTRODE; ONE-STEP SYNTHESIS; ONE-POT SYNTHESIS; ELECTROCHEMICAL PERFORMANCE; TERNARY NANOCOMPOSITE; CONDUCTING POLYMERS; VOLUMETRIC CAPACITANCE; THERMAL-CONDUCTIVITY; CHEMICAL-REDUCTION;
D O I
10.1016/j.est.2023.109300
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
Supercapacitors have revolutionized energy storage technology significantly since their discovery. These devices play a crucial role in various applications, including hybrid electric vehicles and other systems reliant on elec-trical energy. Supercapacitors are considered indispensable energy storage devices due to their fast charging and discharging abilities, high power density, and long cycle life. The effectiveness of supercapacitors can be improved through the design and manufacture of electrode materials. Among the carbon derivatives widely employed as supercapacitor materials, reduced graphene oxide (rGO) has garnered considerable interest due to its superior properties for supercapacitor applications, such as strong mechanical stability, superior electrical conductivity, and large surface area. However, several drawbacks exist when using rGO alone as the electrode material. Therefore, further in-depth investigations are required to address several issues, such as low specific capacitance and slow ionic diffusion due to hydrophobicity and susceptibility to rGO restacking. Another promising conducting polymer, polypyrrole (PPy), has been extensively utilized for energy storage applications as a conducting agent or an electroactive material, thanks to its variable pseudocapacitive performance resulting from its multiple oxidation states. By combining the electrical double-layer capacitances of rGO and the pseu-docapacitances of PPy, rGO/PPy composites exhibit a synergistic effect, resulting in higher specific capacitance, longer cycle life, and higher energy density. This article provides a concise overview of several methods for producing rGO/PPy composites while elucidating the critical factors influencing their electrochemical capacitive performance. Several critical aspects of cell fabrication, such as electrode preparation technique, electrolyte, and current collector, are also discussed. Furthermore, this article summarizes the existing challenges and potential prospects of producing and using rGO/PPy composites, noble metal nanoparticles, metal oxides, and metal sulfides as supercapacitor electrodes.
引用
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页数:30
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