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One-step turning leather wastes into heteroatom doped carbon aerogel for performance enhanced capacitive deionization

机译:一步转动皮革废弃物进入杂处理的碳气凝胶,用于性能增强电容去离子

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摘要

Exploring advanced electrode material is indispensable for achieving enhanced capacitive deionization (CDI) performance. Utilizing low-cost and eco-friendly leather wastes as precursors, herein a carbon aerogel with rich N, O and S doping has been constructed by a one-step activated pyrolysis process. Distortional carbon nanocrystallites (DCNs) in the material and its self hetero-doping could provide uneven surface charge distributions, thus improving both the electronic and ions conductivities, as well as water wettability of the electrode. Besides, the defects from its structure and doping could also act as active sites, boosting the adsorption capacity. In addition, the obtained aerogel exhibits a specific surface area of as high as 2523 m(2) g(-1) with abundant micropores, which is also favorable to salt ions storage. Therefore, CDI cell comprised of the carbon aerogel electrodes exhibits a maximum salt adsorption capacity (mSAC) of 20.92 mg g(-1) and a significantly higher average salt adsorption rate (ASAR) in comparison with commercial active carbon.
机译:探索先进的电极材料对于实现增强的电容去离子(CDI)性能是必不可少的。利用低成本和环保的皮革废物作为前体,本文通过一种富含N,O和S掺杂的碳气凝胶由一步的活化的热解过程构成。材料中的扭曲碳纳米晶(DCNS)及其自杂掺杂可以提供不均匀的表面电荷分布,从而改善电子和离子电导率,以及电极的水润湿性。此外,其结构和掺杂的缺陷也可以充当活性位点,提高吸附容量。另外,所获得的气凝胶具有高达2523μg(-1)的比表面积,具有丰富的微孔,这也有利于盐离子储存。因此,与商业活性炭相比,由碳气体电极组成的CDI电池显示出20.92mg g(-1)的最大盐吸附容量(MSAC)和显着更高的平均盐吸附速率(ASAR)。

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