Recent developments in polypyrrole/manganese oxide-based nanocomposites for thin film electrodes in supercapacitors: a minireview

被引:12
作者
Gaikar, Paresh S. S. [1 ]
Kadu, Kedar S. S. [1 ]
Tehare, Kailas K. K. [2 ]
Wadhawa, Gurumeet C. C. [5 ]
Mahmood, Sami H. H. [3 ]
Lambat, Trimurti L. L. [4 ]
机构
[1] Karmaveer Bhaurao Patil Coll Vashi, Dept Phys, Rayat Shikshan Sansthas, Navi Mumbai 410206, Maharashtra, India
[2] Dr Ajeenkey DY Patil Sch Engn, Dept Phys, Pune 412105, Maharashtra, India
[3] Univ Jordan, Dept Phys, Amman 11942, Jordan
[4] Manoharbhai Patel Coll Arts Commerce & Sci, Dept Chem, Deori 441901, Maharashtra, India
[5] Karmaveer Bhaurao Patil Coll Vashi, Dept Chem, Rayat Shikshan Sansthas, Navi Mumbai 410206, Maharashtra, India
来源
NANOSCALE ADVANCES | 2022年 / 4卷 / 24期
关键词
IN-SITU SYNTHESIS; CHEMICAL-SYNTHESIS; ENERGY-STORAGE; COBALT OXIDE; COMPOSITES; TEMPERATURE; MNO2; PPY;
D O I
10.1039/d2na00654e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This review article highlights the recent developments in the synthesis and electrochemical performance of polypyrrole/manganese oxide thin-film electrodes synthesized by various chemical methods for supercapacitor applications. In the class of conducting polymers for electrode applications, polypyrrole (Ppy) is considered an important polymer due to its low cost and abundance. Ppy's polymeric composition and structural properties, however, pose stability concerns and have a drawback of a short life cycle over long-term charge-discharge processes, limiting its potential for industrial and commercial utilization. Recently, manganese oxide (MnO2) has been actively explored as a supercapacitor electrode material due to its low cost, high theoretical specific capacitance and abundance. Ppy/MnO2 thin film electrodes revealed high specific capacitance and stability, making them excellent candidates for next-generation supercapacitor electrode materials.
引用
收藏
页码:5245 / 5252
页数:8
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