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Cattail fiber-derived hierarchical porous carbon materials for high-performance supercapacitors

机译:用于高性能超级电容器的Cattail纤维衍生的分层多孔碳材料

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摘要

Biomass-derived porous carbon materials are very promising in the fields of energy storage and conversion, owing to their fascinating features, such as superior renewability, low cost and environmental friendliness. Correspondingly, developing a safe and energy effective strategy for fabricating advanced carbon from biomass has drawn tremendous attention. In the present work, cattail fiber-derived porous carbon is prepared with an impregnation-single stage calcination method by using K2CO3 as the activating agent. The dosage of K2CO3 and calcination temperature are optimized according to the supercapacitive performance of the corresponding carbon materials. The optimal CPC-2-600, which is fabricated with a mass ratio of 2:1 for K2CO3 to cattail fibers and calcined at 600 degrees C, possesses much larger specific surface area and more abundant micropores and mesopores than the pristine carbon fabricated without using K2CO3 (denoted as CPC-0-600), leading to an improved supercapacitive behavior. As the electrode material for the three-electrode supercapacitors, CPC-2-600 displays a specific capacitance of 273.8 F g(-1) at 1.0 A g(-1) in 6.0 M KOH solution, as well superior rate capability. Moreover, the CPC-2-600-based symmetrical configuration delivers an energy density of 27.44 Wh kg(-1) at 400 W kg(-1). Even the power density is up to 8000 W kg(-1), the energy density is still maintained as high as 16.67 Wh kg(-1), which is much superior to CPC-0-600. Also, the symmetrical configuration exhibits good cycling stability. This work offers a hierarchical porous carbon from cattail fibers for high-performance supercapacitors. Moreover, the mild, effective and low-cost fabrication strategy is also suitable for preparing other biomass-based carbon, which is promising in heterogeneous catalysis, energy storage and conversion devices, and so on.
机译:生物质多孔碳材料具有可再生性好、成本低、环境友好等优点,在能源储存和转化领域具有广阔的应用前景。相应地,开发一种安全且节能的策略,用生物质制造先进的碳,已经引起了极大的关注。以K2CO3为活化剂,采用浸渍一段煅烧法制备香蒲纤维多孔炭。根据相应炭材料的超级电容性能,优化了K2CO3的用量和煅烧温度。最佳CPC-2-600是以K2CO3与香蒲纤维的质量比为2:1制备的,并在600℃下煅烧,与未使用K2CO3的原始碳相比,具有更大的比表面积和更丰富的微孔和中孔(表示为CPC-0-600),从而改善了超级电容行为。作为三电极超级电容器的电极材料,CPC-2-600在6.0 M KOH溶液中,在1.0 a g(-1)下显示出273.8 F g(-1)的比电容,以及优越的速率性能。此外,基于CPC-2-600的对称配置在400 W-kg(-1)时提供27.44 Wh-kg(-1)的能量密度。即使功率密度高达8000 W kg(-1),能量密度仍保持在16.67 Wh kg(-1)的高水平,远远优于CPC-0-600。此外,对称结构具有良好的循环稳定性。这项工作为高性能超级电容器提供了香蒲纤维的分级多孔碳。此外,温和、有效、低成本的制备策略也适用于制备其他生物质基碳,在多相催化、储能和转换装置等领域具有广阔的应用前景。

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