Ultrasonic-assisted synthesis of polythiophene-carbon nanotubes composites as supercapacitors

被引:0
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作者
Sundus Saeed Qureshi
Sabzoi Nimauddin
Shaukat Ali Mazari
Sumbul Saeed
N. M. Mubarak
Shahid Ullah Khan
Tawfik A. Saleh
机构
[1] Mehran University of Engineering And Technology,Institute of Environmental Engineering and Management
[2] RMIT University,School of Engineering
[3] Dawood University of Engineering and Technology,Department of Chemical Engineering
[4] Huazhong Agricultural University,College of Plant Sciences and Technology
[5] Curtin University,Department of Chemical Engineering, Faculty of Engineering and Science
[6] Fahd University of Petroleum & Minerals,Department of Chemistry King
来源
Journal of Materials Science: Materials in Electronics | 2021年 / 32卷
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摘要
Supercapacitors are widely used as electrical energy storage devices as a backup in industry power appliances and also in household appliances. The use of carbonaceous material in developing supercapacitors results in a lower energy storage capacity but is accompanied by the desire for higher stability. Meanwhile, the application of metal oxides or conducting polymers in supercapacitors provides a high storage capacity albeit with reduced stability. This research focuses on fabricating a hybrid of carbon nanotubes (CNTs)-based polythiophene (PTH) composites for feasibility in supercapacitor application. By analyzing the results, it was found that the 0.2 g CNT/PTH composite has electrical conductivity, σ of 0.022 s/cm which was lower than 0.5 g CNT/PTH composite which had 0.038 s/cm of electrical conductivity. Besides that, the specific capacitance, CS of the 0.2 g CNTs, and 0.5 g CNTs with PTH composites were found to be 0.032 F/g and 0.057 F/g, respectively. The energy density, however, was found to be higher in 0.2 g CNT/PTH composite with a value of 0.0062 w/g whereas 0.0035 w/g for 0.5 g CNT/PTH composite. Based on the attained data, it can be concluded that the weight% of CNTs in the composite can be the preferred choice that does affect the overall performance of the supercapacitor.
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页码:16203 / 16214
页数:11
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