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- W3168986699 abstract "With an increasing demand for energy and concerns about the environment, scientists are trying to find a better way to generate green energy and store the generated energy efficiently. Biowaste could be an attractive source for the preparation of active materials for energy storing devices. In this project, a shell of pomegranate was used to prepare high surface area carbon for supercapacitor applications. The dry powder of pomegranate was chemically activated using various ratios of pomegranate and activating agent to produce carbon with a range of properties. The unactivated pomegranate-based carbon's surface area was 40 m 2 /g, which improved to 1459, 1737, and 2189 m 2 /g upon chemical activation using 1:1, 1:2, and 1:3 ratios of pomegranate: activating agent, respectively. The energy storage capacity was calculated using galvanostatic charge-discharge measurements, and the highest specific capacitance of 190 F/g at 1 A/g was observed for PG-2 (1:2 ratio of pomegranate: activating agent) carbon. Using the electrode , the symmetric supercapacitor devices were fabricated utilizing various electrolytes (aqueous, organic, and ionic liquid electrolytes). The highest energy density of 8.8, 39, and 68 Wh/kg were obtained for aqueous, organic, and ionic liquid electrolytes, respectively. On the other hand, the highest power density of 3950, 8943, and 11,316 W/kg have been achieved for the pomegranate-based carbon in aqueous, organic, and ionic liquid electrolytes, respectively. Our research suggests that pomegranate-based carbon could be an attractive material for the fabrication of energy storage devices. • High-performance carbon was synthesiezed using pomegranate powder. • Chemical treatment significantly increased the surface area of the carbon from the pomegranate. • The highest specific capacitance of 190 F/g at 1 A/g was observed. • The highest power density of 11,316 W/kg was observed in an ionic liquid electrolyte." @default.
- W3168986699 created "2021-06-22" @default.
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- W3168986699 date "2021-09-01" @default.
- W3168986699 modified "2023-10-10" @default.
- W3168986699 title "Pomegranate: An eco-friendly source for energy storage devices" @default.
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- W3168986699 doi "https://doi.org/10.1016/j.surfcoat.2021.127405" @default.
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