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Microwave-Assisted Synthesis of Highly-Crumpled, Few-Layered Graphene and Nitrogen-Doped Graphene for Use as High-Performance Electrodes in Capacitive Deionization

机译:微波辅助合成的高度皱折,几层石墨烯和氮掺杂石墨烯,用作电容去离子中的高性能电极

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摘要

Capacitive deionization (CDI) is a promising procedure for removing various charged ionic species from brackish water. The performance of graphene-based material in capacitive deionization is lower than the expectation of the industry, so highly-crumpled, few-layered graphene (HCG) and highly-crumpled nitrogen-doped graphene (HCNDG) with high surface area have been introduced as promising candidates for CDI electrodes. Thus, HCG and HCNDG were prepared by exfoliation of graphite in the presence of liquid-phase, microwave-assisted methods. An industrially-scalable, cost-effective, and simple approach was employed to synthesize HCG and HCNDG, resulting in few-layered graphene and nitrogen-doped graphene with large specific surface area. Then, HCG and HCNDG were utilized for manufacturing a new class of carbon nanostructure-based electrodes for use in large-scale CDI equipment. The electrosorption results indicated that both the HCG and HCNDG have fairly large specific surface areas, indicating their huge potential for capacitive deionization applications.
机译:电容去离子(CDI)是一种从微咸水中去除各种带电离子物种的有前途的程序。石墨烯基材料在电容去离子中的性能低于业界的预期,因此引入了高皱缩,少层的石墨烯(HCG)和高皱缩的高表面积氮掺杂石墨烯(HCNDG), CDI电极的有希望的候选人。因此,HCG和HCNDG是在液相,微波辅助方法存在下通过剥落石墨制备的。采用工业可扩展,具有成本效益且简单的方法来合成HCG和HCNDG,得到的层数很少的石墨烯和氮掺杂的石墨烯具有较大的比表面积。然后,HCG和HCNDG被用于制造用于大规模CDI设备的新型碳纳米结构基电极。电吸附结果表明,HCG和HCNDG均具有相当大的比表面积,表明它们在电容去离子应用中具有巨大潜力。

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