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An ultrasonic-assisted synthesis of rice-straw-based porous carbon with high performance symmetric supercapacitors

机译:高性能对称超级电容器的超声波辅助合成水稻秸秆基多孔碳

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Biomass porous carbon materials are ideal supercapacitor electrode materials due to their low price, rich source of raw materials and environmental friendliness. In this study, an ultrasonic-assisted method was applied to synthesize the rice-straw-based porous carbon (UPC). The obtained UPC exhibited a two-dimensional structure and high specific surface area. In addition, the electrochemical test results showed that the UPC with a 1 hour ultrasonic treatment and lower activation temperature of 600 °C (UPC-600) demonstrated optimal performance: high specific capacitances of 420 F g ~(?1) at 1.0 A g ~(?1) and 314 F g ~(?1) at a high current of 10 A g ~(?1) . Significantly, the symmetric supercapacitors showed a high energy density of 11.1 W h kg ~(?1) and power density of 500 W kg ~(?1) . After 10?000 cycles, 99.8% of the specific capacitance was retained at 20 A g ~(?1) . These results indicate that UPC-600 is a promising candidate for supercapacitor electrode materials.
机译:生物质多孔碳材料是理想的超级电容器电极材料,因为它们的低价格,丰富的原材料来源和环境友好。在该研究中,应用超声波辅助方法合成稻草基多孔碳(UPC)。获得的UPC表现出二维结构和高比表面积。此外,电化学测试结果表明,UPC具有1小时超声波处理和600°C(UPC-600)的较低激活温度展示了最佳性能:420 f g〜(Δ1)的高比电容为1.0 g 〜(?1)和314 f g〜(α1)在10 a g〜(Δ1)的高电流下。值得注意的是,对称超级电容器显示出高能量密度为11.1WH kg〜(α1)和500W kg〜(?1)的功率密度。在10×000循环之后,将99.8%的特定电容保持在20 A G〜(α1)。这些结果表明,UPC-600是超级电容器电极材料的有希望的候选者。

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