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Biomass-derived porous carbons with tailored graphitization degree and pore size distribution for supercapacitors with ultra-high rate capability

机译:具有量身定制的石墨化程度和孔径分布的生物质多孔碳,用于具有超高倍率能力的超级电容器

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摘要

It is extraordinarily valuable to develop the supercapacitor with high capacitance retention under ultra-high current density to meet the requirement of fast charging. Herein, porous carbons with tailored graphitization degree and pore size distribution are facilely prepared via controlling the activation temperature of biomass-derived pyrolytic carbon when employing potassium ferrate (K2FeO4) as catalyst and activation agent. The obtained semi-graphitized microporous carbon with a large specific surface area (2208 m(2) g(-1)), high proportion of large micropores (more than 71.8%) and high conductivity (2.38 S cm(-1)) exhibits a perfect balance between the charge storage capacity and rate capability, which specific capacitance reaches 254 and 273 F g(-1) at a current density of 0.5 A g(-1) in KOH and H2SO4 aqueous electrolyte, respectively. Surprising capacitance retention of 86.9% is obtained under an ultra-large current density of 100 A g(-1) for the symmetrical supercapacitor based on the semi-graphitized microporous carbon, and no apparent attenuation was observed after 10,000 cycles. Furthermore, energy density of the assembled symmetrical supercapacitor reaches 7.4 Wh kg(-1) at a power density of 151.4 W kg(-1), and more than 87.8% of energy density is kept even under an ultra-large power density of 29.1 kW kg(-1).
机译:开发超高电流密度下具有高电容保持能力的超级电容器,以满足快速充电的需求,这是非常有价值的。在此,当使用高铁酸钾(K 2 FeO 4)作为催化剂和活化剂时,通过控制源自生物质的热解碳的活化温度,可以容易地制备具有定制的石墨化度和孔径分布的多孔碳。所获得的半石墨化微孔碳具有大的比表面积(2208 m(2)g(-1)),高比例的大微孔(大于71.8%)和高电导率(2.38 S cm(-1))表现出电荷存储容量和速率容量之间的完美平衡,在KOH和H2SO4水性电解质中,在0.5 A g(-1)的电流密度下,比电容分别达到254和273 F g(-1)。对于基于半石墨化微孔碳的对称超级电容器,在100 A g(-1)的超大电流密度下,获得了惊人的86.9%的电容保持率,并且在10,000次循环后未观察到明显的衰减。此外,组装的对称超级电容器的能量密度在151.4 W kg(-1)的功率密度下达到7.4 Wh kg(-1),即使在29.1的超大功率密度下也能保持超过87.8%的能量密度千瓦kg(-1)。

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