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Tuning Carbon Materials for Supercapacitors by Direct Pyrolysis of Seaweeds

机译:通过海藻直接热解调节超级电容器的碳材料

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摘要

The sea provides a large variety of seaweeds that, because of their chemical composition, are fantastic precursors of nanotextured carbons. The carbons are obtained by the simple pyrolysis of the seaweeds under a nitrogen atmosphere between 600 and 900℃, followed by rinsing the product in slightly acidic water. Depending on the origin of the seaweed and on the pyrolysis conditions, the synthesis may be oriented to give an oxygen-enriched carbon or to give a tuned micro/mesoporous carbon. The samples with a rich oxygenated surface functionality are excellent as supercapacitor electrodes in an aqueous medium whereas the perfectly tuned porous carbons are directly applicable for organic media. In both cases, the specific surface area of the attained carbons does not exceed 1300 m~2 g~(-1), which results in high-density materials. As a consequence, the volumetric capacitance is very high, making these materials more interesting than activated carbons from the point of view of developing small and compact electric power sources. Such versatile carbons, obtained by a simple, ecological, and cheap process, could be well used for environment remediation such as water and air treatment.
机译:海洋提供了各种各样的海藻,由于它们的化学成分,它们是纳米纹理碳的绝佳前体。碳是通过在600至900℃之间的氮气氛下将海藻简单热解,然后在微酸性水中冲洗产品而获得的。取决于海藻的起源和热解条件,可以使合成定向为产生富氧碳或产生经调谐的微/中碳。具有丰富的氧化表面功能的样品非常适合作为水性介质中的超级电容器电极,而经过微调的多孔碳可直接用于有机介质。在这两种情况下,获得的碳的比表面积均不超过1300 m〜2 g〜(-1),这导致了材料的高密度化。结果,体积电容非常高,从开发小型紧凑型电源的角度来看,这些材料比活性炭更有趣。通过简单,生态和廉价的过程获得的这种多用途碳可以很好地用于环境修复,例如水和空气处理。

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