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首页> 外文期刊>Royal Society Open Science >Enhancement of the electrochemical properties of commercial coconut shell-based activated carbon by H2O dielectric barrier discharge plasma
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Enhancement of the electrochemical properties of commercial coconut shell-based activated carbon by H2O dielectric barrier discharge plasma

机译:H2O介质阻挡放电等离子体增强商品椰子壳基活性炭的电化学性能

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Commercial coconut shell-based activated carbon (CSAC) has low specific capacitance and specific capacitance retention owing to its undeveloped pore structure and low proportion of heteroatoms. In this study, dielectric barrier discharge plasma was used to enhance the specific capacitance and rate capability of CSAC. H 2 O was used as an excited medium to introduce oxygen functional groups. The physico-chemical properties of CSAC and CSAC modified by H 2 O plasma (HCSAC) were revealed by automated surface area and pore size analysis, Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy and Raman spectroscopy. Electrochemical work was applied to investigate the electrochemical properties of CSAC and HCSAC. The results obtained showed that plasma modification improved the specific capacitance of CSAC by 64.8% (current density, 1 A g ?1 ; electrolyte, 6 M KOH solution) within 100 s. This result is ascribed to the oxygen functional groups introduced to the surface of CSAC. It can also improve the hydrophilicity and wettability of the carbon surface leading to an increase from 76.7% to 84.6% in specific capacitance retention. Furthermore, H 2 O plasma modification can introduce oxygen functional groups without destroying the initial pore structures of CSAC. In summary, we provide a simple, fast, environment-friendly modification method to enhance the electrochemical properties of CSAC.
机译:商业椰子壳基活性炭(CSAC)由于其不发达的孔结构和低比例的杂原子而具有较低的比电容和比电容保持率。在这项研究中,电介质势垒放电等离子体用于增强CSAC的比电容和倍率能力。 H 2 O用作引入氧官能团的激发介质。通过自动表面积和孔径分析,傅立叶变换红外光谱,X射线光电子能谱和拉曼光谱揭示了H 2 O等离子体(HCSAC)修饰的CSAC和CSAC的理化性质。电化学工作用于研究CSAC和HCSAC的电化学性能。获得的结果表明,等离子体改性在100 s内将CSAC的比电容提高了64.8%(电流密度,1 A g?1;电解质,6 M KOH溶液)。该结果归因于引入CSAC表面的氧官能团。它还可以改善碳表面的亲水性和可湿性,从而导致比电容保持率从76.7%增加到84.6%。此外,H 2 O等离子体改性可以引入氧官能团而不会破坏CSAC的初始孔结构。总之,我们提供了一种简单,快速,环境友好的改性方法来增强CSAC的电化学性能。

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